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Chin. Phys. B, 2022, Vol. 31(9): 093401    DOI: 10.1088/1674-1056/ac8736
Special Issue: TOPICAL REVIEW — Celebrating 30 Years of Chinese Physics B
TOPICAL REVIEW—Celebrating 30 Years of Chinese Physics B Prev   Next  

Atomic structure and collision dynamics with highly charged ions

Xinwen Ma(马新文)1,2,3,†, Shaofeng Zhang(张少锋)1,2, Weiqiang Wen(汶伟强)1,2, Zhongkui Huang(黄忠魁)1,2, Zhimin Hu(胡智民)4, Dalong Guo(郭大龙)1,2, Junwen Gao(高俊文)5, Bennaceur Najjari1, Shenyue Xu(许慎跃)1,2, Shuncheng Yan(闫顺成)1,2, Ke Yao(姚科)6, Ruitian Zhang(张瑞田)1,2, Yong Gao(高永)1,2, and Xiaolong Zhu(朱小龙)1,2
1 Institute of Modern Physics, Chinese Academy of Sciences, Lanzhou 730000, China;
2 University of Chinese Academy of Sciences, Beijing 100049, China;
3 Key Laboratory of Atomic and Molecular Physics and Functional Materials of Gansu Province, College of Physics and Electronic Engineering, Northwest Normal University, Lanzhou 730070, China;
4 Key Laboratory of Radiation Physics and Technology of the Ministry of Education, Sichuan University, Chengdu 610064, China;
5 Department of Physics, Hangzhou Normal University, Hangzhou 311121, China;
6 Shanghai EBIT Laboratory, Key Laboratory of Nuclear Physics and Ion-Beam Application(MOE), Fudan University, Shanghai 200433, China
Abstract  The research progresses on the investigations of atomic structure and collision dynamics with highly charged ions based on the heavy ion storage rings and electron ion beam traps in recent 20 years are reviewed. The structure part covers test of quantum electrodynamics and electron correlation in strong Coulomb field studied through dielectronic recombination spectroscopy and VUV/x-ray spectroscopy. The collision dynamics part includes charge exchange dynamics in ion-atom collisions mainly in Bohr velocity region, ion-induced fragmentation mechanisms of molecules, hydrogen-bound and van de Waals bound clusters, interference, and phase information observed in ion-atom/molecule collisions. With this achievements, two aspects of theoretical studies related to low energy and relativistic energy collisions are presented. The applications of data relevant to key atomic processes like dielectronic recombination and charge exchanges involving highly charged ions are discussed. At the end of this review, some future prospects of research related to highly charged ions are proposed.
Keywords:  highly charged ion      atomic structure      collision dynamics      quantum electrodynamics      fragmentation mechanisms      relativistic effects      electron correlation  
Received:  01 June 2022      Revised:  03 August 2022      Accepted manuscript online:  05 August 2022
PACS:  34.70.+e (Charge transfer)  
  34.50.-s (Scattering of atoms and molecules)  
  36.40.Qv (Stability and fragmentation of clusters)  
  34.80.Lx (Recombination, attachment, and positronium formation)  
Fund: Project supported by the National Key Research and Development Program of China (Grant No. 2017YFA0402300), the Strategic Priority Research Program of the Chinese Academy of Sciences (Grant No. XDB34020000), and the Heavy Ion Research Facility in Lanzhou (HIRFL).
Corresponding Authors:  Xinwen Ma     E-mail:  x.ma@impcas.ac.cn

Cite this article: 

Xinwen Ma(马新文), Shaofeng Zhang(张少锋), Weiqiang Wen(汶伟强), Zhongkui Huang(黄忠魁), Zhimin Hu(胡智民), Dalong Guo(郭大龙), Junwen Gao(高俊文), Bennaceur Najjari, Shenyue Xu(许慎跃), Shuncheng Yan(闫顺成), Ke Yao(姚科), Ruitian Zhang(张瑞田), Yong Gao(高永), and Xiaolong Zhu(朱小龙) Atomic structure and collision dynamics with highly charged ions 2022 Chin. Phys. B 31 093401

[1] Karshenboim S G, Pavone F S, Bassani G F, Inguscio M and Hänsch T W 2001 The Hydrogen Atom, Precision Physics of Simple Atomic System (Springer)
[2] Steck M and Litvinov Y A 2020 Prog. Part. Nucl. Phys. 115 103811
[3] Marrs R E, Elliott S R and Knapp D A 1994 Phys. Rev. Lett. 72 4082
[4] Mokler P H 1998 Hyperfine Interact. 114 21
[5] Schulz M, Moshammer R, Fischer D, Kollmus H, Madison D H, Jones S and Ullrich J 2003 Nature 422 48
[6] Dörner R, Mergel V, Jagutzki O, Spielberger L, Ullrich J, Moshammer R, and Schmidt-Böcking H 2000 Phys. Rep. 330 95
[7] Ullrich J, Moshammer R, Dorn A, Dörner R, Schmidt L P H and Schmidt-Böcking H 2003 Rep. Prog. Phys. 66 1463
[8] Mergel V, Dörner R, Achler M, Khayyat K, Lencinas S, Euler J, Jagutzki O, Nüttgens S, Unverzagt M, Spielberger L, Wu W, Ali R, Ullrich J, Cederquist H, Salin A, Wood C J, Olson R E, Belkić D, Cocke C L and Schmidt-Böcking H 1997 Phys. Rev. Lett. 79 387
[9] Dörner R, Khemliche H, Prior M H, Cocke C L, Gary J A, Olson R E, Mergel V, Ullrich J and Schmidt-Böcking H 1996 Phys. Rev. Lett. 77 4520
[10] Schmidt L P H, Goihl C, Metz D, Schmidt-Böcking H, Dörner R, Ovchinnikov S Y, Macek J H and Schultz D R 2014 Phys. Rev. Lett. 112 083201
[11] Stolterfoht N, Havener C C, Phaneuf R A, Swenson J K, Shafroth S M and Meyer F W 1986 Phys. Rev. Lett. 57 74
[12] Zhang R T, Feng W T, Zhu X L, Zhang S F, Guo D L, Gao Y, Qian D B, Xu S, Yan S C, Zhang P, Huang Z K, Wang H B, Hai B, Zhao D M and Ma X 2016 Phys. Rev. A 93 032709
[13] Moshammer R, Schmitt W, Ullrich J, Kollmus H, Cassimi A, Dörner R, Jagutzki O, Mann R, Olson R E, Prinz H T, Schmidt-Böcking H and Spielberger L 1997 Phys. Rev. Lett. 79 3621
[14] Weber T, Weckenbrock M, Staudte A, Spielberger L, Jagutzki O, Mergel V, Afaneh F, Urbasch G, Vollmer M, Giessen H and Dörner R 2000 Phys. Rev. Lett. 84 443
[15] Bergues B, Kübel M, Johnson N G, Fischer B, Camus N, Betsch K J, Herrwerth O, Senftleben A, Sayler A M, Rathje T, Pfeifer T, Ben-Itzhak I, Jones R R, Paulus G G, Krausz F, Moshammer R, Ullrich J and Kling M F 2012 Nat. Commun. 3 813
[16] Schöffler M S, Stuck C, Waitz M, Trinter F, Jahnke T, Lenz U, Jones M, Belkacem A, Landers A L, Pindzola M S, Cocke C L, Colgan J, Kheifets A, Bray I, Schmidt-Böcking H, Dörner R and Weber T 2013 Phys. Rev. Lett. 111 013003
[17] Kircher M, Trinter F, Grundmann S, Vela-Perez I, Brennecke S, Eicke N, Rist J, Eckart S, Houamer S, Chuluunbaatar O, Popov Y V, Volobuev I P, Bagschik K, Piancastelli M N, Lein M, Jahnke T, Schöffler M S and Dörner R 2020 Nat. Phys. 16 756
[18] Gao J W, Wu Y, Sisourat N, Wang J G and Dubois A 2017 Phys. Rev. A 96 052703
[19] Xu S, Guo D, Ma X, Zhu X, Feng W, Yan S, Zhao D, Gao Y, Zhang S, Ren X, Zhao Y, Xu Z, Dorn A, Cederbaum L S and Kryzhevoi N V 2018 Angew. Chem. Int. Ed. 57 17023
[20] Zhu X, Hu X, Yan S, Peng Y, Feng W, Guo D, Gao Y, Zhang S, Cassimi A, Xu J, Zhao D, Dong D, Hai B, Wu Y, Wang J and Ma X 2020 Nat. Commun. 11 2987
[21] Gao Y, Zhang S, Zhu X, Guo D, Schulz M, Voitkiv A, Zhao D, Hai B, Zhang M and Zhang R 2018 Phys. Rev. A 97 020701
[22] Zhang S F, Najjari B and Ma X 2021 J. Phys. B:At., Mol. Opt. Phys. 54 15
[23] Beiersdorfer P, Hell N and Lepson J K 2018 Astrophys. J. 864 24
[24] Preval S P, Badnell N R and O'Mullane M G 2016 Phys. Rev. A 93 042703
[25] Brandau C, Kozhuharov C, Müller A, Shi W, Schippers S, Bartsch T, Böhm S, Böhme C, Hoffknecht A and Knopp H 2003 Phys. Rev. Lett. 91 073202
[26] Brandau C, Kozhuharov C, Harman Z, Müller A, Schippers S, Kozhedub Y S, Bernhardt D, Böhm S, Jacobi J, Schmidt E W, Mokler P H, Bosch F, Kluge H J, Stöhlker T, Beckert K, Beller P, Nolden F, Steck M, Gumberidze A, Reuschl R, Spillmann U, Currell F J, Tupitsyn I I, Shabaev V M, Jentschura U D, Keitel C H, Wolf A and Stachura Z 2008 Phys. Rev. Lett. 100 073201
[27] Schippers S, Schmidt E W, Bernhardt D, Yu D, Muller A, Lestinsky M, Orlov D A, Grieser M, Repnow R and Wolf A 2007 Hci 2006:13th International Conference on the Physics of Highly Charged Ions 58 137
[28] Lestinsky M, Lindroth E, Orlov D, Schmidt E, Schippers S, Böhm S, Brandau C, Sprenger F, Terekhov A and Müller A 2008 Phys. Rev. Lett. 100 033001
[29] Müller A 2008 Adv. At. Mol. Opt. Phys. 55 293
[30] Schippers S 2015 Nucl. Instrum. Method B 350 61
[31] Brandau C, Kozhuharov C, Lestinsky M, Müller A, Schippers S and Stöhlker T 2015 Phys. Scr. T166 014022
[32] Schuch R and Böhm S 2007 J. Phys. Conf. Ser. 88 012002
[33] Lestinsky M, Andrianov V, Aurand B, Bagnoud V, Bernhardt D, Beyer H, Bishop S, Blaum K, Bleile A and Borovik A 2016 Eur. Phys. J. Spec. Top. 225 797
[34] Grieser M, Litvinov Y A, Raabe R, Blaum K, Blumenfeld Y, Butler P A, Wenander F, Woods P, Aliotta M and Andreyev A 2012 Eur. Phys. J. Spec. Top. 207 1
[35] Bernhardt D, Brandau C, Harman Z, Kozhuharov C, Böhm S, Bosch F, Fritzsche S, Jacobi J, Kieslich S and Knopp H 2015 Phys. Rev. A 91 012710
[36] Brandau C, Kozhuharov C, Müller A, Bernhardt D, Banas D, Bosch F, Currell F, Dimopoulou C, Gumberidze A and Hagmann S 2013 Phys. Scr. T156 014050
[37] Shevelko V and Tawara H 2012 Atomic Processes in Basic and Applied Physics (Heidelberg, Springer-Verlag) p. 283
[38] Huang Z K, Wen W Q, Wang H B, Xu X, Zhu L F, Chuai X Y, Yuan Y J, Zhu X L, Han X Y, Mao L J, Li J, Ma X M, Yan T L, Yang J C, Xiao G Q, Xia J W and Ma X 2015 Phys. Scr. T166 014023
[39] Wang S X, Xu X, Huang Z K, Wen W Q, Wang H B, Khan N, Preval S P, Badnell N R, Schippers S, Mahmood S, Dou L J, Chuai X Y, Zhao D M, Zhu X L, Mao L J, Ma X M, Li J, Mao R S, Yuan Y J, Tang M T, Yin D Y, Yang J C, Ma X and Zhu L F 2018 The Astrophys. J. 862 134
[40] Khan N, Huang Z K, Wen W Q, Mahmood S, Dou L J, Wang S X, Xu X, Wang H B, Chen C Y and Chuai X Y 2018 Chin. Phys. C 42 064001
[41] Huang Z K, Wen W Q, Wang S X, Khan N, Wang H B, Chen C Y, Zhang C Y, Preval S P, Badnell N R, Ma W L, Liu X, Chen D Y, Zhu X L, Zhao D M, Mao L J, Ma X M, Li J, Tang M T, Mao R S, Yin D Y, Yang W Q, Yang J C, Yuan Y J, Zhu L F and Ma X 2020 Phys. Rev. A 102 062823
[42] Huang Z K, Wen W Q, Xu X, Mahmood S, Wang S X, Wang H B, Dou L J, Khan N, Badnell N R, Preval S P, Schippers S, Xu T H, Yang Y, Yao K, Xu W Q, Chuai X Y, Zhu X L, Zhao D M, Mao L J, Ma X M, Li J, Mao R S, Yuan Y J, Wu B, Sheng L N, Yang J C, Xu H S, Zhu L F and Ma X 2018 Astrophys. J. Suppl. Ser. 235 2
[43] Huang Z K, Wen W Q, Xu X, Wang S X, Wang H B, Dou L J, Mahmood S, Khan N, Xu W Q, Xu T H, Yao K, Chuai X Y, Zhu X L, Zhao D M, Mao L J, Yang J C, Yuan Y J, Zhu L F and Ma X 2018 J. Phys.:Conf. Ser. 875 012020
[44] Fritzsche S 2021 Astron. Astrophys. 656 A163
[45] Wang S X, Huang Z K, Wen W Q, Chen C Y, Schippers S, Xu X, Sardar S, Khan N, Wang H B, Dou L J, Mahmood S, Zhao D M, Zhu X L, Mao L J, Ma X M, Li J, Tang M T, Mao R S, Yin D Y, Yuan Y J, Yang J C, Shi Y L, Dong C Z, Ma X W and Zhu L F 2019 Astron. Astrophys. 627 A171
[46] Wang S, Huang Z, Wen W, Ma W, Wang H, Schippers S, Wu Z, Kozhedub Y, Kaygorodov M and Volotka A 2022 arXiv:2205.01334
[47] Khan N, Huang Z K, Wen W Q, Wang S X, Chen C Y, Zhang C Y, Wang H B, Liu X, Ma W L, Chen D Y, Yao K, Zhao D M, Mao L J, Ma X M, Li J, Tang M T, Yin D Y, Yuan Y J, Yang J C, Zhu L F and Ma X W 2022 J. Phys. B:At., Mol. Opt. Phys. 55 035001
[48] Mahmood S, Huang Z K, Wen W Q, Wang S X, Chen C Y, Khan N, Xu X, Dou L J, Wang H B, Zhu X L, Zhao D M, Mao L J, Ma X M, Li J, Tang M T, Mao R S, Yang W Q, Yin D Y, Yuan Y J, Yang J C, Zhu L F and Ma X 2020 J. Phys. B:At., Mol. Opt. Phys. 53 085004
[49] Wen W Q, Huang Z K, Wang S X, Khan N, Wang H B, Chen C Y, Zhang C Y, Preval S, Badnell N R, Ma W L, Chen D Y, Liu X, Zhao D M, Mao L J, Li J, Ma X M, Tang M T, Yin D Y, Yang W Q, Yuan Y J, Yang J C, Zhu L F and Ma X 2020 Astrophys. J. 905 36
[50] Yang J C, Xia J W, Xiao G Q, Xu H S, Zhao H W, Zhou X H, Ma X W, He Y, Ma L Z, Gao D Q, Meng J, Xu Z, Mao R S, Zhang W, Wang Y Y, Sun L T, Yuan Y J, Yuan P, Zhan W L, Shi J, Chai W P, Yin D Y, Li P, Li J, Mao L J, Zhang J Q and Sheng L N 2013 Nucl. Instrum. Method B 317 263
[51] Huang Z K, Wen W Q, Xu X, Wang H B, Dou L J, Chuai X Y, Zhu X L, Zhao D M, Li J, Ma X M, Mao L J, Yang J C, Yuan Y J, Xu W Q, Xie L Y, Xu T H, Yao K, Dong C Z, Zhu L F and Ma X 2017 Nucl. Instrum. Method B 408 135
[52] Ma X, Wen W Q, Zhang S F, Yu D Y, Cheng R, Yang J, Huang Z K, Wang H B, Zhu X L, Cai X, Zhao Y T, Mao L J, Yang J C, Zhou X H, Xu H S, Yuan Y J, Xia J W, Zhao H W, Xiao G Q and Zhan W L 2017 Nucl. Instrum. Method B 408 169
[53] Knapp D A, Marrs R E, Levine M A, Bennett C L, Chen M H, Henderson J R, Schneider M B and Scofield J H 1989 Phys. Rev. Lett. 62 2104
[54] Ali R, Bhalla C P, Cocke C L and Stockli M 1990 Phys. Rev. Lett. 64 633
[55] O'Rourke B E, Kuramoto H, Li Y M, Ohtani S, Tong X M, Watanabe H and Currell F J 2004 J. Phys. B:At., Mol. Opt. Phys. 37 2343
[56] Beiersdorfer P, Phillips T W, Wong K L, Marrs R E and Vogel D A 1992 Phys. Rev. A 46 3812
[57] Zhang X, López-Urrutia J R C, Guo P, Mironov V, Shi X, Martínez A J G, Tawara H and Ullrich J 2004 J. Phys. B:At., Mol. Opt. Phys. 37 2277
[58] Shah C, Jörg H, Bernitt S, Dobrodey S, Steinbrügge R, Beilmann C, Amaro P, Hu Z, Weber S, Fritzsche S, Surzhykov A, Crespo López-Urrutia J R and Tashenov S 2015 Phys. Rev. A 92 042702
[59] Knapp D A, Marrs R E, Schneider M B, Chen M H, Levine M A and Lee P 1993 Phys. Rev. A 47 2039
[60] Watanabe H, Tobiyama H, Kavanagh A P, Li Y M, Nakamura N, Sakaue H A, Currell F J and Ohtani S 2007 Phys. Rev. A 75 012702
[61] Yao K, Geng Z, Xiao J, Yang Y, Chen C, Fu Y, Lu D, Hutton R and Zou Y 2010 Phys. Rev. A 81 022714
[62] Tu B, Xiao J, Shen Y, Yang Y, Lu D, Xu T H, Li W X, Chen C Y, Fu Y, Wei B, Zheng C, Huang L Y, Hutton R, Wang X, Yao K, Zou Y, Zhang B H and Tang Y J 2016 Phys. Plasmas 23 053301
[63] Harman Z, Shah C, González Martínez A J, Jentschura U D, Tawara H, Keitel C H, Ullrich J and Crespo López-Urrutia J R 2019 Phys. Rev. A 99 012506
[64] Xiong G, Zhang J, Hu Z, Nakamura N, Li Y, Han X, Yang J and Zhang B 2013 Phys. Rev. A 88 042704
[65] DeWitt D R, Schneider D, Clark M W, Chen M H and Church D 1991 Phys. Rev. A 44 7185
[66] O'Rourke B E, Currell F J, Kuramoto H, Ohtani S, Watanabe H, Li Y M, Tawara T and Tong X M 2008 Phys. Rev. A 77 062709
[67] Hu Z, Li Y and Nakamura N 2013 Phys. Rev. A 87 052706
[68] Nakamura N, Kavanagh A P, Watanabe H, Sakaue H A, Li Y, Kato D, Currell F J and Ohtani S 2008 Phys. Rev. Lett. 100 073203
[69] González Martínez A J, López-Urrutia J R C, Braun J, Brenner G, Bruhns H, Lapierre A, Mironov V, Soria Orts R, Tawara H, Trinczek M, Ullrich J and Scofield J H 2005 Phys. Rev. Lett. 94 203201
[70] Hu Z, Xiong G, He Z, Yang Z, Numadate N, Huang C, Yang J, Yao K, Wei B, Zou Y, Wu C, Ma Y, Wu Y, Gao X and Nakamura N 2022 Phys. Rev. A 105 L030801
[71] Tong X M, Hu Z, Li Y, Han X, Kato D, Watanabe H and Nakamura N 2015 J. Phys. B:At., Mol. Opt. Phys. 48 144002
[72] Beilmann C, Mokler P H, Bernitt S, Keitel C H, Ullrich J, Lopez-Urrutia J R and Harman Z 2011 Phys. Rev. Lett. 107 143201
[73] Schnell M, Gwinner G, Badnell N R, Bannister M E, Böhm S, Colgan J, Kieslich S, Loch S D, Mitnik D, Müller A, Pindzola M S, Schippers S, Schwalm D, Shi W, Wolf A and Zhou S G 2003 Phys. Rev. Lett. 91 043001
[74] Beilmann C, Harman Z, Mokler P H, Bernitt S, Keitel C H, Ullrich J and López-Urrutia J R C 2013 Phys. Rev. A 88 062706
[75] Beilmann C, Postavaru O, Arntzen L H, Ginzel R, Keitel C H, Mäckel V, Mokler P H, Simon M C, Tawara H, Tupitsyn I I, Ullrich J, Crespo López-Urrutia J R and Harman Z 2009 Phys. Rev. A 80 050702
[76] Chantler C T, Kinnane M N, Gillaspy J D, Hudson L T, Payne A T, Smale L F, Henins A, Pomeroy J M, Tan J N, Kimpton J A, Takacs E and Makonyi K 2012 Phys. Rev. Lett. 109 153001
[77] Kubiček K, Mokler P H, Mäckel V, Ullrich J and López-Urrutia J R C 2014 Phys. Rev. A 90 032508
[78] Chantler C T, Payne A T, Gillaspy J D, Hudson L T, Smale L F, Henins A, Kimpton J A and Takacs E 2014 New J. Phys. 16 123037
[79] Epp S W, Steinbrügge R, Bernitt S, Rudolph J K, Beilmann C, Bekker H, Müller A, Versolato O O, Wille H C, Yavaş H, Ullrich J and Crespo López-Urrutia J R 2015 Phys. Rev. A 92 020502
[80] Beiersdorfer P, Osterheld A L, Scofield J H, Crespo López-Urrutia J R and Widmann K 1998 Phys. Rev. Lett. 80 3022
[81] O'Neil G, Sanders S, Szypryt P, Dipti, Gall A, Yang Y, Brewer S M, Doriese R, Fowler J, Naing A, Swetz D, Tan J, Ullom J, Volotka A V, Takacs E and Ralchenko Y 2020 Phys. Rev. A 102 032803
[82] Beiersdorfer P, Chen H, Thorn D B and Trabert E 2005 Phys. Rev. Lett. 95 233003
[83] Rzadkiewicz J, Yang Y, Koziol K, O'Mullane M G, Patel A, Xiao J, Yao K, Shen Y, Lu D, Hutton R, Zou Y and Contributors J E T 2018 Phys. Rev. A 97 052501
[84] Gillaspy J D, Lin T, Tedesco L, Tan J N, Pomeroy J M, Laming J M, Brickhouse N, Chen G X and Silver E 2011 Astrophys. J. 728 132
[85] Nakamura N, Numadate N, Kono Y, Murakami I, Kato D, Sakaue H A and Hara H 2021 Astrophys. J. 921 115
[86] Clementson J, Beiersdorfer P and Gu M F 2010 Phys. Rev. A 81 012505
[87] Qiu M L, Zhao R F, Guo X L, Zhao Z Z, Li W X, Du S Y, Xiao J, Yao K, Chen C Y, Hutton R and Zou Y 2014 J. Phys. B:At., Mol. Opt. Phys. 47 175002
[88] Ralchenko Y, Draganić I N, Osin D, Gillaspy J D and Reader J 2011 Phys. Rev. A 83 032517
[89] Das T, Podpaly Y A, Reader J, Gillaspy J D and Ralchenko Y 2018 Eur. Phys. J. D 72 124
[90] Lu D, Yang Y, Xiao J, Shen Y, Fu Y, Wei B, Yao K, Hutton R and Zou Y 2014 Rev. Sci. Instrum. 85 093301
[91] Li W, Grumer J, Yang Y, Brage T, Yao K, Chen C, Watanabe T, Jönsson P, Lundstedt H, Roger H and Zou Y 2015 Astrophys. J. 807 69
[92] Chen W D, Hu W, Fu Y Q, Xiao J, Liu Y, Meng F C, Shen T M, Chen C Y, Wu S, Wei B, Hutton R and Zou Y 2007 Phys. Plasmas 14 103302
[93] Fritzsche S, Surzhykov A and Stöhlker T 2009 Phys. Rev. Lett. 103 113001
[94] Hu Z, Han X, Li Y, Kato D, Tong X and Nakamura N 2012 Phys. Rev. Lett. 108 073002
[95] Jörg H, Hu Z, Bekker H, Blessenohl M A, Hollain D, Fritzsche S, Surzhykov A, Crespo López-Urrutia J R and Tashenov S 2015 Phys. Rev. A 91 042705
[96] Amaro P, Shah C, Steinbrügge R, Beilmann C, Bernitt S, López-Urrutia J R C and Tashenov S 2017 Phys. Rev. A 95 022712
[97] Shah C, Amaro P, Steinbrügge R, Beilmann C, Bernitt S, Fritzsche S, Surzhykov A, Crespo López-Urrutia J R and Tashenov S 2016 Phys. Rev. E 93 061201
[98] Shah C, Amaro P, Steinbrügge R, Bernitt S, López-Urrutia J R C and Tashenov S 2018 Astrophys. J. Suppl. Ser. 234 27
[99] Kozlov M G, Safronova M S, Crespo López-Urrutia J R and Schmidt P O 2018 Rev. Mod. Phys. 90 045005
[100] Schmöger L, Versolato O O, Schwarz M, Kohnen M, Windberger A, Piest B, Baumann S Feuchtenbeiner, Pedregosa-Gutierrez J, Leopold T, Micke P, Hansen A K, Baumann T M, Drewsen M, Ullrich J, Schmidt P O and López-Urrutia J R C 2015 Science 347 1233
[101] Micke P, Leopold T, King S A, Benkler E, Spieß L J, Schmöger L, Schwarz M, Crespo López-Urrutia J R and Schmidt P O 2020 Nature 578 60
[102] Liu X, Zhou X P, Wen W Q, Lu Q F, Yan C L, Xu G Q, Xiao J, Volotka A V, Kozhedub Y S, Kaygorodov M Y, Huang Z K, Ma W L, Wang S X and Ma X 2021 Phys. Rev. A 104 062804
[103] Parthey C G, Matveev A, Alnis J, Bernhardt B, Beyer A, Holzwarth R, Maistrou A, Pohl R, Predehl K, Udem T, Wilken T, Kolachevsky N, Abgrall M, Rovera D, Salomon C, Laurent P and Hänsch T W 2011 Phys. Rev. Lett. 107 203001
[104] Brandt A D, Cooper S F, Rasor C, Burkley Z, Matveev A and Yost D C 2022 Phys. Rev. Lett. 128 023001
[105] Bezginov N, Valdez T, Horbatsch M, Marsman A, Vutha A C and Hessels E A 2019 Science 365 1007
[106] Glazov D A, Köhler-Langes F, Volotka A V, Blaum K, Heiße F, Plunien G, Quint W, Rau S, Shabaev V M, Sturm S and Werth G 2019 Phys. Rev. Lett. 123 173001
[107] Mohr P J, Plunien G and Soff G 1998 Phys. Rep. 293 227
[108] Safronova M S, Budker D, DeMille D, Kimball D F J, Derevianko A and Clark C W 2018 Rev. Mod. Phys. 90 025008
[109] Stöhlker T, Mokler P H, Bosch F, Dunford R W, Franzke F, Klepper O, Kozhuharov C, Ludziejewski T, Nolden F, Reich H, Rymuza P, Stachura Z, Steck M, Swiat P and Warczak A 2000 Phys. Rev. Lett. 85 3109
[110] Xia J W, Zhan W L, Wei B W, Yuan Y J, Song M T, Zhang W Z, Yang X D, Yuan P, Gao D Q, Zhao H W, Yang X T, Xiao G Q, Man K T, Dang J R, Cai X H, Wang Y F, Tang J Y, Qiao W M, Rao Y N, He Y, Mao L Z and Zhou Z Z 2002 Nucl. Instrum. Method A 488 11
[111] Shabaev V M 2002 Phys. Rep. 356 119
[112] Gumberidze A, Stöhlker T, Banaś D, Beckert K, Beller P, Beyer H F, Bosch F, Hagmann S, Kozhuharov C, Liesen D, Nolden F, Ma X, Mokler P H, Steck M, Sierpowski D and Tashenov S 2005 Phys. Rev. Lett. 94 223001
[113] Gassner T, Trassinelli M, Heß R, Spillmann U, Banaś D, Blumenhagen K H, Bosch F, Brandau C, Chen W, Dimopoulou C, Förster E, Grisenti R E, Gumberidze A, Hagmann S, Hillenbrand P M, Indelicato P, Jagodzinski P, Kämpfer T, Kozhuharov C, Lestinsky M, Liesen D, Litvinov Y A, Loetzsch R, Manil B, Märtin R, Nolden F, Petridis N, Sanjari M S, Schulze K S, Schwemlein M, Simionovici A, Steck M, Stöhlker T, Szabo C I, Trotsenko S, Uschmann I, Weber G, Wehrhan O, Winckler N, Winters D F A, Winters N, Ziegler E and Beyer H F 2018 New J. Phys. 20 073033
[114] Kraft-Bermuth S, Andrianov V, Bleile A, Echler A, Egelhof P, Grabitz P, Ilieva S, Kiselev O, Kilbourne C, McCammon D, Meier J P and Scholz P 2017 J. Phys. B:At., Mol. Opt. Phys. 50 055603
[115] Yerokhin V A and Shabaev V M 2015 J. Phys. Chem. Ref. Data 44 033103
[116] Beiersdorfer P 2010 J. Phys. B:At., Mol. Opt. Phys. 43 074032
[117] Indelicato P 2019 J. Phys. B:At., Mol. Opt. Phys. 52 232001
[118] Beier T, Beinker M, Persson E, Zschocke S and Soff G 1998 Hyperfine Interact. 114 3
[119] Ullmann J, Andelkovic Z, Brandau C, Dax A, Geithner W, Geppert C, Gorges C, Hammen M, Hannen V, Kaufmann S, Konig K, Litvinov Y A, Lochmann M, Maass B, Meisner J, Murbock T, Sanchez R, Schmidt M, Schmidt S, Steck M, Stohlker T, Thompson R C, Trageser C, Vollbrecht J, Weinheimer C and Nortershauser W 2017 Nat. Commun. 8 15484
[120] Huang Z K, Wang S X, Wen W Q, Xu X, Wang H B, Li S, Dou L J, Khan N, Mahmood S, Zhu X L, Zhao D M, Mao L J, Ma X M, Li J, Mao R S, Yang J C, Yin D Y, Yuan Y J, Chen C Y, Zhu L F and Ma X 2020 X-Ray Spectrometry 49 155
[121] Schippers S 2012 J. Phys. Conf. Ser. 388 012010
[122] Savin D W 2007 J. Phys. Conf. Ser. 388 012071
[123] Preval S, Badnell N and O'Mullane M 2017 AIP Conf. Proc. 1811 030002
[124] Badnell N, Spruck K, Krantz C, Novotny O, Becker A, Bernhardt D, Grieser M, Hahn M, Repnow R and Savin D W 2016 Phys. Rev. A 93 052703
[125] Preval S, Badnell N and O'Mullane M 2016 Phys. Rev. A 93 042703
[126] Preval S, Badnell N and O'Mullane M 2017 J. Phys. B:At., Mol. Opt. Phys. 50 105201
[127] Preval S P, Badnell N R and O'Mullane M 2018 J. Phys. B:At., Mol. Opt. Phys. 51 045004
[128] Gu M F 2003 Astrophys. J. 590 1131
[129] Colgan J, Pindzola M S, Whiteford A D and Badnell N R 2003 Astronomy & Astrophysics 412 597
[130] Ma X, Zhu X, Liu H, Li B, Zhang S, Cao S, Feng W and Xu S 2008 Sci. China Phys. Mech. 51 755
[131] Flechard X, Nguyen H, Wells E, Ben-Itzhak I and DePaola B D 2001 Phys. Rev. Lett. 87 123203
[132] Lee T G, Nguyen H, Flechard X, DePaola B D and Lin C D 2002 Phys. Rev. A 66 042701
[133] Ma X, Zhang R T, Zhang S F, Zhu X L, Feng W T, Guo D L, Li B, Liu H P, Li C Y, Wang J G, Yan S C, Zhang P J and Wang Q 2011 Phys. Rev. A 83 052707
[134] Dörner R, Mergel V, Spielberger L, Jagutzki O, Unverzagt M, Schmitt W, Ullrich J, Moshammer R, Khemliche H, Prior M, Olson R E, Zhaoyuan L, Wu W, Cocke C L and Schmidt-Böcking H 1996 AIP Conf. Proc. 360 495
[135] Cassimi A, Duponchel S, Flechard X, Jardin P, Sortais P, Hennecart D and Olson R E 1996 Phys. Rev. Lett. 76 3679
[136] Fléchard X, Harel C, Jouin H, Pons B, Adoui L, Frémont F, Cassimi A and Hennecart D 2001 J. Phys. B:At., Mol. Opt. Phys. 34 2759
[137] Guo D L, Ma X, Zhang S F, Zhu X L, Feng W T, Zhang R T, Li B, Liu H P, Yan S C, Zhang P J and Wang Q 2012 Phys. Rev. A 86 052707
[138] Schöffler M S, Titze J N, Schmidt L P H, Jahnke T, Jagutzki O, Schmidt-Böcking H and Dörner R 2009 Phys. Rev. A 80 042702
[139] Schöffler M S, Titze J, Schmidt L P H, Jahnke T, Neumann N, Jagutzki O, Schmidt-Böcking H, Dörner R and Mančev I 2009 Phys. Rev. A 79 064701
[140] Kim H K, Schöffler M S, Houamer S, Chuluunbaatar O, Titze J N, Schmidt L P H, Jahnke T, Schmidt-Böcking H, Galstyan A, Popov Y V and Dörner R 2012 Phys. Rev. A 85 022707
[141] Fischer D, Feuerstein B, DuBois R D, Moshammer R, Lopez-Urrutia J R C, Draganic I, Lorch H, Perumal A N and Ullrich J 2002 J. Phys. B:At., Mol. Opt. Phys. 35 1369
[142] Beiersdorfer P, Boyce K R, Brown G V, Chen H, Kahn S M, Kelley R L, May M, Olson R E, Porter F S, Stahle C K and Tillotson W A 2003 Science 300 1558
[143] Xu J W, Xu C X, Zhang R T, Zhu X L, Feng W T, Gu L, Liang G Y, Guo D L, Gao Y, Zhao D M, Zhang S F, Su M G and Ma X 2021 Astrophys. J. Suppl. Ser. 253 13
[144] Zhang R T, Wulf D, McCammon D, Seely D G, Andrianarijaona V M and Havener C C 2019 AIP Conf. Proc. 2160 070004
[145] Han J, Wei L, Wang B, Ren B, Yu W, Zhang Y, Zou Y, Chen L, Xiao J and Wei B 2021 Astrophys. J. Suppl. Ser. 253 6
[146] Gu L, Kaastra J and Raassen A J J 2016 Astron. Astrophys. 588 A52
[147] Arnaud K A, Dorman B and Gordon C A 1999 XSPEC:An X-ray Spectral Fitting Package
[148] Smith R K, Foster A R, Edgar R J and Brickhouse N S 2014 Astrophys. J. 787 77
[149] Schultz D R, Stancil P C and Rakovic M J 2001 J. Phys. B:At., Mol. Opt. Phys. 34 2739
[150] Mancev I, Mergel V and Schmidt L 2003 J. Phys. B:At., Mol. Opt. Phys. 36 2733
[151] Abufager P N, Fainstein P D, Martínez A E and Rivarola R D 2004 J. Phys. B:At., Mol. Opt. Phys. 38 11
[152] Knoop S, Olson R E and Ott H 2005 J. Phys. B:At., Mol. Opt. Phys. 38 1987
[153] Mančev I and Milojević N 2010 Phys. Rev. A 81 022710
[154] Gao J W, Wu Y, Wang J G, Dubois A and Sisourat N 2019 Phys. Rev. Lett. 122 093402
[155] Guo D L, Gao J W, Zhang S F, Zhu X L, Gao Y, Zhao D M, Zhang R T, Wu Y, Wang J G, Dubois A and Ma X 2021 Phys. Rev. A 103 032827
[156] Knoop S, Fischer D, Xue Y, Zapukhlyak M, Osborne C J, Ergler T, Ferger T, Braun J, Brenner G, Bruhns H, Dimopoulou C, Epp S W, Martínez A J G, Sikler G, Orts R S, Tawara H, Kirchner T, López-Urrutia J R C, Moshammer R, Ullrich J and Hoekstra R 2008 J. Phys. B:At., Mol. Opt. Phys. 41 195203
[157] Zhang R T, Zhu X L, Li X Y, Liu L, Zhang S F, Feng W T, Guo D L, Gao Y, Zhao D M, Wang J G and Ma X 2017 Phys. Rev. A 95 042702
[158] Barany A, Danared H, Cederquist H, Hvelplund P, Knudsen H, Pedersen J O K, Cocke C L, Tunnell L N, Waggoner W and Giese J P 1986 J. Phys. B:At., Mol. Opt. Phys. 19 L427
[159] Wang Q, Ma X, Zhu X L and Zhang S F 2011 J. Phys. B:At., Mol. Opt. Phys. 45 025202
[160] Gao R S, Johnson L K, Schafer D A, Newman J H, Smith K A and Stebbings R F 1988 Phys. Rev. A 38 2789
[161] Horsdal E, Jensen B and Nielsen K O 1986 Phys. Rev. Lett. 57 1414
[162] van der Poel M, Nielsen C V, Gearba M A and Andersen N 2001 Phys. Rev. Lett. 87 123201
[163] Fischer D, Gudmundsson M, Berényi Z, Haag N, Johansson H A B, Misra D, Reinhed P, Källberg A, Simonsson A, Stochkel K, Cederquist H and Schmidt H T 2010 Phys. Rev. A 81 012714
[164] Danared H and Barany A 1986 J. Phys. B:At., Mol. Opt. Phys. 19 3109
[165] Agueny H 2015 Phys. Rev. A 92 012702
[166] Guo D, Ma X, Zhang R, Zhang S, Zhu X, Feng W, Gao Y, Hai B, Zhang M and Wang H 2017 J. Phys.:Conf. Ser. 875 092019
[167] Fritsch W and Lin C D 1991 Phys. Rep. 202 1
[168] Ferguson A F and Bates D R 1961 Proceedings of the Royal Society of London. Series A. Mathematical and Physical Sciences 264 540
[169] McCarroll R and Bates D R 1961 Proceedings of the Royal Society of London. Series A. Mathematical and Physical Sciences 264 547
[170] Zygelman B, Cooper D L, Ford M J, Dalgarno A, Gerratt J and Raimondi M 1992 Phys. Rev. A 46 3846
[171] Errea L F, Harel C, Jouini H, Mendez L, Pons B and Riera A 1994 J. Phys. B:At., Mol. Opt. Phys. 27 3603
[172] Bransden B H, McDowell M R C and Mansky E J 1993 Phys. Today 46 124
[173] Sisourat N, Pilskog I and Dubois A 2011 Phys. Rev. A 84 052722
[174] Gao J W, Wu Y and Wang J G 2018 Phys. Rev. A 97 052709
[175] Aumayr F, Ueda K, Sokell E, Schippers S, Sadeghpour H, Merkt F, Gallagher T F, Dunning F B, Scheier P, Echt O, Kirchner T, Fritzsche S, Surzhykov A, Ma X, Rivarola R, Fojon O, Tribedi L, Lamour E, Crespo López-Urrutia J R, Litvinov Y A, Shabaev V, Cederquist H, Zettergren H, Schleberger M, Wilhelm R A, Azuma T, Boduch P, Schmidt H T and Stöhlker T 2019 J. Phys. B:At., Mol. Opt. Phys. 52 171003
[176] Abdurakhmanov I B, Kadyrov A S, Avazbaev S K and Bray I 2016 J. Phys. B:At., Mol. Opt. Phys. 49 115203
[177] Leung A C K and Kirchner T 2019 Eur. Phys. J. D 73 246
[178] Milburn G J, Jacobs K and Walls D F 1994 Phys. Rev. A 50 5256
[179] Winter T G 2007 Phys. Rev. A 76 062702
[180] Liu X J, Liu L, Wang J G, Qu Y Z and Xiao B J 2011 Phys. Plasmas 18 103301
[181] Faulkner J, Abdurakhmanov I B, Alladustov S U, Kadyrov A S and Bray I 2019 Plasma Phys. Contr. F. 61 095005
[182] Brouillard F, Claeys W, Poulaert G, Rahmat G and Wassenhove G V 1979 J. Phys. B:At., Mol. Opt. Phys. 12 1253
[183] Peart B and Forrest R A 1979 J. Phys. B:At., Mol. Opt. Phys. 12 L23
[184] Shingal R and Bransden B H 1990 J. Phys. B:At., Mol. Opt. Phys. 23 1203
[185] Wang J, Hansen J P and Dubois A 2000 J. Phys. B:At., Mol. Opt. Phys. 33 241
[186] Bräuning H, Helm H, Briggs J S and Salzborn E 2007 Phys. Rev. Lett. 99 173202
[187] Stenrup M, Larson Å and Elander N 2009 Phys. Rev. A 79 012713
[188] Mezei J Z, Stenrup M, Elander N and Larson Å 2010 Phys. Rev. A 82 014701
[189] Yan L L, Wu Y, Qu Y Z, Wang J G and Buenker R J 2013 Phys. Rev. A 88 022706
[190] Dubois A, Nielsen S E and Hansen J P 1993 J. Phys. B:At., Mol. Opt. Phys. 26 705
[191] Ghanbari-Adivi E and Ghavaminia H 2012 Eur. Phys. J. D 66 318
[192] Amaldi U and Kraft G 2005 Rep. Prog. Phys. 68 1861
[193] Belkić D 2010 J. Math. Chem. 47 1366
[194] Janev R 2005 Contem. Phys. 46 121
[195] Delabie E, Brix M, Giroud C, Jaspers R J E, Marchuk O, O'Mullane M G, Ralchenko Y, Surrey E, von Hellermann M G and Zastrow K D 2010 Plasma Phys. Contr. F. 52 125008
[196] Cravens T E 2002 Science 296 1042
[197] Voitkiv A B 2004 Phys. Rep. 392 191
[198] Anholt R and Gould H 1986 Adv. Atom. Mol. Phys. 22 315
[199] Bertulani C A and Baur G 1988 Phys. Rep. 163 299
[200] Eichler J 1990 Phys. Rep. 193 165
[201] Najjari A B V B and Ullrich J 2008 Phys. Rev. Lett. 101 223201
[202] Voitkiv A B and Najjari B 2005 J. Phys. B:At., Mol. Opt. Phys. 38 3587
[203] Neumann N, Hant D, Schmidt L P H, Titze J, Jahnke T, Czasch A, Schöffler M S, Kreidi K, Jagutzki O, Schmidt-Böcking H and Dörner R 2010 Phys. Rev. Lett. 104 103201
[204] Khan A, Tribedi L C and Misra D 2017 Phys. Rev. A 96 012703
[205] Wang B, Han J, Zhu X, Wei L, Ren B, Zhang Y, Yu W, Yan S, Ma X, Zou Y, Chen L and Wei B 2021 Phys. Rev. A 103 042810
[206] Xu S, Zhu X L, Feng W T, Guo D L, Zhao Q, Yan S, Zhang P, Zhao D M, Gao Y, Zhang S F, Yang J and Ma X 2018 Phys. Rev. A 97 062701
[207] Jiang T, Wang B, Zhang Y, Wei L, Chen S, Yu W, Zou Y, Chen L and Wei B 2019 Phys. Rev. A 100 022705
[208] Ren B, Xia Z, Zhang Y, Wei L, Yu W, Han J, Wang B, Zou Y, Chen L and Wei B 2021 Phys. Rev. A 104 022811
[209] Ma C, Xu S, Zhao D, Guo D, Yan S, Feng W, Zhu X and Ma X 2020 Phys. Rev. A 101 052701
[210] Yuan H, Xu Z, Xu S, Ma C, Zhang Z, Guo D, Zhu X, Zhao D, Zhang S, Yan S, Gao Y, Zhang R and Ma X 2022 Phys. Rev. A 105 022814
[211] He Z, Wang J, Zhang Y, Wang B, Han J, Ren B, Wei L, Xia Z, Ma P, Meng T, Zou Y, Hu Z and Wei B 2022 Phys. Rev. A 105 022818
[212] Jana M R, Ghosh P N, Bapat B, Kushawaha R K, Saha K, Prajapati I A and Safvan C P 2011 Phys. Rev. A 84 062715
[213] Zhang Y, Jiang T, Wei L, Luo D, Wang X, Yu W, Hutton R, Zou Y and Wei B 2018 Phys. Rev. A 97 022703
[214] Khan A, Tribedi L C and Misra D 2015 Phys. Rev. A 92 030701
[215] Maclot S, Delaunay R, Piekarski D G, Domaracka A, Huber B A, Adoui L, Martín F, Alcamí M, Avaldi L, Bolognesi P, Díaz-Tendero S and Rousseau P 2016 Phys. Rev. Lett. 117 073201
[216] Maclot S, Piekarski D G, Delaunay R, Domaracka A, Méry A, Vizcaino V, Chesnel J Y, Martín F, Alcamí M, Huber B A, Adoui L, Rousseau P and Díaz-Tendero S 2014 Eur. Phys. J. D 68 149
[217] Maclot S, Piekarski D G, Domaracka A, Méry A, Vizcaino V, Adoui L, Martín F, Alcamí M, Huber B A, Rousseau P and Díaz-Tendero S 2013 J. Phys. Chem. Lett. 4 3903
[218] Piekarski D G, Delaunay R, Maclot S, Adoui L, Martín F, Alcamí M, Huber B A, Rousseau P, Domaracka A and Díaz-Tendero S 2015 Phys. Chem. Chem. Phys. 17 16767
[219] Piekarski D G, Delaunay R, Mika A, Maclot S, Adoui L, Martín F, Alcamí M, Huber B A, Rousseau P and Díaz-Tendero S 2017 Phys. Chem. Chem. Phys. 19 19609
[220] Barreiro-Lage D, Nicolafrancesco C, Kočišek J, Luna A, Kopyra J, Alcamí M, Huber B A, Martín F, Domaracka A and Rousseau P 2022 Phys. Chem. Chem. Phys. 24 941
[221] Holm A I, Zettergren H, Johansson H A, Seitz F, Rosen S, Schmidt H T, Ławicki A, Rangama J, Rousseau P and Capron M 2010 Phys. Rev. Lett. 105 213401
[222] Wei L, Ren B, Zhang Y, Wang J, Wang B, Han J, Yu W, Zou Y, Chen L and Wei B 2021 Phys. Rev. A 103 012810
[223] Zhang Y, Ren B, Yang C L, Wei L, Wang B, Han J, Yu W, Qi Y, Zou Y and Chen L 2020 Commun. Chem. 3 1
[224] Wei L, Lam C S, Zhang Y, Ren B, Han J, Wang B, Zou Y, Chen L, Lau K C and Wei B 2021 J. Phys. Chem. Lett. 12 5789
[225] Méry A, Agnihotri A N, Douady J, Fléchard X, Gervais B, Guillous S, Iskandar W, Jacquet E, Matsumoto J, Rangama J, Ropars F, Safvan C P, Shiromaru H, Zanuttini D and Cassimi A 2017 Phys. Rev. Lett. 118 233402
[226] Ding X, Haertelt M, Schlauderer S, Schuurman M S, Naumov A Y, Villeneuve D M, McKellar A R W, Corkum P B and Staudte A 2017 Phys. Rev. Lett. 118 153001
[227] Markush P, Bolognesi P, Cartoni A, Rousseau P, Maclot S, Delaunay R, Domaracka A, Kocisek J, Castrovilli M C, Huber B A and Avaldi L 2016 Phys. Chem. Chem. Phys. 18 16721
[228] Nomura S, Tsuchida H, Kajiwara A, Yoshida S, Majima T and Saito M 2017 J. Chem. Phys. 147 225103
[229] Hu X, Peng Y, Zhu X, Yan S, Liu L, Feng W, Guo D, Gao Y, Zhang S and Zhao D 2020 Phys. Rev. A 101 012707
[230] Peng Y, Hu X, Wu Y, Wang J, Lu R and Sisourat N 2021 J. Phys. B:At., Mol. Opt. Phys. 54 125102
[231] Buenker R J and Peyerimhoff S D 1974 Theor. Chim. Acta 35 33
[232] Hu X, Jia C, Xu T, Wu Y and Wang J 2022 Phys. Rev. A 106 012814
[233] Zhao X, Xu T, Yu X, Ren D, Zhang X, Li X, Ma P, Wang C, Zhang D and Wang Q 2021 Phys. Rev. A 103 053103
[234] Lin K, Hu X, Pan S, Chen F, Ji Q, Zhang W, Li H, Qiang J, Sun F and Gong X 2020 J. Phys. Chem. Lett. 11 3129
[235] Davisson C J 1928 J. Franklin I. 205 597
[236] Tuan T F and Gerjuoy E 1960 Phys. Rev. 117 756
[237] Cheng S, Cocke C L, Frohne V, Kamber E Y, McGuire J H and Wang Y 1993 Phys. Rev. A 47 3923
[238] Misra D, Schmidt H T, Gudmundsson M, Fischer D, Haag N, Johansson H A B, Källberg A, Najjari B, Reinhed P, Schuch R, Schöffler M, Simonsson A, Voitkiv A B and Cederquist H 2009 Phys. Rev. Lett. 102 153201
[239] Schmidt H T, Fischer D, Berenyi Z, Cocke C L, Gudmundsson M, Haag N, Johansson H A B, Källberg A, Levin S B, Reinhed P, Sassenberg U, Schuch R, Simonsson A, Støchkel K and Cederquist H 2008 Phys. Rev. Lett. 101 083201
[240] Schmidt L P H, Schössler S, Afaneh F, Schöffler M, Stiebing K E, Schmidt-Böcking H and Dörner R 2008 Phys. Rev. Lett. 101 173202
[241] Landers A L, Wells E, Osipov T, Carnes K D, Alnaser A S, Tanis J A, McGuire J H, Ben-Itzhak I and Cocke C L 2004 Phys. Rev. A 70 042702
[242] Senftleben A, Pflüger T, Ren X, Al-Hagan O, Najjari B, Madison D, Dorn A and Ullrich J 2010 J. Phys. B:At., Mol. Opt. Phys. 43 081002
[243] Alexander J S, Laforge A C, Hasan A, Machavariani Z S, Ciappina M F, Rivarola R D, Madison D H and Schulz M 2008 Phys. Rev. A 78 060701
[244] Egodapitiya K N, Sharma S, Hasan A, Laforge A C, Madison D H, Moshammer R and Schulz M 2011 Phys. Rev. Lett. 106 153202
[245] Zhang S F, Fischer D, Schulz M, Voitkiv A B, Senftleben A, Dorn A, Ullrich J, Ma X and Moshammer R 2014 Phys. Rev. Lett. 112 023201
[246] Stöhlker T, Beyer H F, Bräuning-Demian A, Brandau C, Gumberidze A, Grisenti R E, Hagmann S, Herfurth F, Kozhuharov C, Kühl T, Liesen D, Litvinov Y, Maertin R, Nörtershäuser W, Kester O, Petridis N, Quint W, Schramm U, Schuch R, Spillmann U, Trotsenko S, Weber G and Winters D 2011 AIP Conf. Proc. 1336 132
[247] Kekelidze V, Kovalenko A, Lednicky R, Matveev V, Meshkov I, Sorin A and Trubnikov G% 2013 Status of NICA project at JINR, 085
[248] Einstein A, Podolsky B and Rosen N 1935 Phys. Rev. 47 777
[249] Bell J S 1964 Phys. Physique Fizika 1 195
[250] Hensen B, Bernien H, Dréau A E, Reiserer A, Kalb N, Blok M S, Ruitenberg J, Vermeulen R F, Schouten R N and Abellán C 2015 Nature 526 682
[251] Tielens A G G M 2013 Rev. Mod. Phys. 85 1021
[252] Ishak B 2019 Contemp. Phys. 60 262
[253] Seiferle B, von der Wense L, Bilous P V, Amersdorffer I, Lemell C, Libisch F, Stellmer S, Schumm T, Düllmann C E, Pálffy A and Thirolf P G 2019 Nature 573 243
[254] Ma X, Wen W Q, Huang Z K, Wang H B, Yuan Y J, Wang M, Sun Z Y, Mao L J, Yang J C, Xu H S, Xiao G Q and Zhan W L 2015 Phys. Scr. T166 014012
[255] Hoszowska J, Dousse J C, Szlachetko J, Kayser Y, Cao W, Jagodziński P, Kavčič M and Nowak S 2011 Phys. Rev. Lett. 107 053001
[256] Wölfli W, Stoller C, Bonani G, Suter M and Stöckli M 1975 Phys. Rev. Lett. 35 656
[257] Lyashchenko K N, Andreev O Y and Yu D 2020 Phys. Rev. A 101 040501
[258] Wang Z, Najjari B, Zhang S F, Ma X and Voitkiv A B 2019 Phys. Rev. A 100 052710
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