Please wait a minute...
Chin. Phys. B, 2013, Vol. 22(10): 103402    DOI: 10.1088/1674-1056/22/10/103402
ATOMIC AND MOLECULAR PHYSICS Prev   Next  

Multiple ionization of atoms and molecules impacted by very high-q fast projectiles in the strong coupling regime (q/v >1)

Zhou Man (周满), Zou Xian-Rong (邹贤容), Zhao Lei (赵磊), Chen Xi-Meng (陈熙萌), Wang Shi-Yao (王诗尧), Zhou Wang (周旺), Shao Jian-Xiong (邵剑雄)
School of Nuclear Science and Technology, Lanzhou University, Lanzhou 730000, China
Abstract  In this paper, we present a simple theoretical approach to calculate the multiple ionization of big atoms and molecules induced by very high-q fast projectiles in a strong coupling regime (q/v >1). The results obtained from this approach are in excellent agreement with the available experimental data. A probable scenario of molecular multiple ionization by fast and very high-q projectiles is discussed. The very small computational time required here and the good agreement with the existing experimental data make it a good candidate for studying the multiple ionization of complex molecules under high linear energy transfers.
Keywords:  multiple ionization      high-q projectiles      strong coupling regime      model calculation  
Received:  24 December 2012      Revised:  19 March 2013      Accepted manuscript online: 
PACS:  34.50.Fa (Electronic excitation and ionization of atoms (including beam-foil excitation and ionization))  
  34.10.+x (General theories and models of atomic and molecular collisions and interactions (including statistical theories, transition state, stochastic and trajectory models, etc.))  
Fund: Project supported by the National Natural Science Foundation of China (Grant Nos. 11174116 and 11175075).
Corresponding Authors:  Shao Jian-Xiong     E-mail:  shaojx@lzu.edu.cn

Cite this article: 

Zhou Man (周满), Zou Xian-Rong (邹贤容), Zhao Lei (赵磊), Chen Xi-Meng (陈熙萌), Wang Shi-Yao (王诗尧), Zhou Wang (周旺), Shao Jian-Xiong (邵剑雄) Multiple ionization of atoms and molecules impacted by very high-q fast projectiles in the strong coupling regime (q/v >1) 2013 Chin. Phys. B 22 103402

[1] Chen X M, Jiang L J, Zhou P, Zhou C L, Gao Z M, Qiu X Y, Cui Y, Wang X A, Lou F J, Lü X Y, Jia J J, Chen L, Shao J X, Lü Y and Wang F 2011 Chin. Phys. B 20 013402
[2] Cai X H, Yu D Y, Cao Z R, Lu R C, Yang W, Shao C J and Chen X M 2004 Chin. Phys. 13 1679
[3] Boudaiffa B, Cloutier P, Hunting D, Hues M A and Sanche L 2000 Science 287 1658
[4] Herbst E and Leung C M 1989 Astrophys. J. Suppl. Ser. 69 271
[5] Lindsay B G 2004 J. Geophys. Res. 109 A08305
[6] Senger B, Wittendorp-Rechenmann E and Rechenmann R V 1982 Nucl. Instrum. Methods 194 437
[7] Senger B and Rechenmann R V 1984 Nucl. Instrum. Methods 2 204
[8] Olivera G H, Caraby C, Jardin P, Cassimi A, Adoui L and Gervais B 1998 Phys. Med. Biol. 43 2347
[9] Abbas I, Champion C, Zarour B, Lasri B and Hanssen J 2008 Phys. Med. Biol. 53 N41
[10] Illescas Clara, Errea L F, Mendez L, Pons B, Rabadan I and Riera A 2011 Phys. Rev. A 83 052704
[11] Olson R E, Ullrich J and Schmidt-Bocking H 1989 Phys. Rev. A 39 5572
[12] Ben-Itzhak I, Gray T J, Legg J C and McGoire J H 1988 Phys. Rev. A 37 3685
[13] Kabachnik N M, Kondratyev V N, Roller-Lutz Z and Lutz H O 1997 Phys. Rev. A 56 2848
[14] Kabachnik N M, Kondratyev V N, Roller-Lutz Z and Lutz H O 1998 Phys. Rev. A 57 990
[15] Berg H, Ullrich J, Bernstein E, Unverzagt M, Spielberger L, Euler J, Schardt D, Jagutzki O, Schmidt-Bocking H, Mann R, Mokler P H, Hagmann S and Fainstein P D 1992 J. Phys. B: At. Mol. Opt. Phys. 25 3655
[16] Berg H, Jagutzki O, Dorner R, DuBois R D, Kelbch C, Schmidt-Bocking H, Ullrich J, Tanis J A, Schlachter A S, Blumenfeld L, D’Etat B, Hagmann S, Gonzales A and Quinteros T 1992 Phys. Rev. A 46 5539
[17] Heber O, Bandong B B, Sampoll G and Watson R L 1990 Phys. Rev. Lett. 64 851
[18] Ludde H J, Spranger T, Horbatsch M and Kirchner T 2009 Phys. Rev. A 80 60702
[19] Murakami M, Kirchner T, Horbatsch M and Ludde H J 2012 Phys. Rev. A 85 052704
[20] Adoui L, Caraby C, Cassimi A, Lelièvre D, Grandin J P and Dubois A 1999 J. Phys. B: At. Mol. Opt. Phys. 32 631
[21] Shao J X, Chen X M, Liu Z Y, Qi R and Zou X R 2008 Phys. Rev. A 77 042711
[22] Shao J X, Chen X M, Zou X R, Wang X A and Lou F J 2008 Phys. Rev. A 78 042701
[23] Shao J X, Zou X R, Chen X M, Zhou C L and Qiu X Y 2011 Phys. Rev. A 83 022710
[24] Zou X R, Liu L D, Ji M C, Feng D, Chen X M and Shao J X 2012 Chin. Phys. B 21 033401
[25] Bohr N and Lindhard J 1954 K. Dan. Vidensk. Selsk. Mat. Fys. Medd. 28 7
[26] Werner U, Kabachnik N M, Kondratyev V N and Lutz H O 1997 Phys. Rev. Lett. 79 1662
[27] Lekadir H, Abbas I, Champion C, Fojón O, Rivarola R D and Hanssen J 2009 Phys. Rev. A 79 062710
[28] Galassi M E, Rivarola R D, Beuve M, Olivera G H and Fainstein P D 2000 Phys. Rev. A 62 022701
[29] Crothers D S F and McCarroll R 1987 J. Phys. B: At. Mol. Opt. Phys. 20 2835
[30] Janev R K, Solov’ev E A and Jakimovski D 1995 J. Phys. B: At. Mol. Opt. Phys. 28 L615
[31] Wehrman L A, Ford A L and Reading J F 1996 J. Phys. B: At. Mol. Opt. Phys. 29 5831
[32] Bradley J, Lee R J S, McCartney M and Crothers D S F 2004 J. Phys. B: At. Mol. Opt. Phys. 37 3723
[33] MOLPRO, version 2010.1, a package of ab initio programs, Werner H J, Knowles P J, Knizia G, Manby F R, Schutz M, Celani P, Korona T, Lindh R, Mitrushenkov A, Rauhut G, Shamasundar K R, Adler T B, Amos R D, Bernhardsson A, Berning A, Cooper D L, Deegan M J O, Dobbyn A J, Eckert F, Goll E, Hampel C, Hesselmann A, Hetzer G, Hrenar T, Jansen G, Koppl C, Liu Y, Lloyd A W, Mata R A, May A J, McNicholas S J, Meyer W, Mura M E, Nicklass A, O’Neill D P, Palmieri P, Puger K, Pitzer R, Reiher M, Shiozaki T, Stoll H, Stone A J, Tarroni R, Thorsteinsson T, Wang M and Wolf A, see http://www.molpro.net.
[34] Knowles P J, Hampel C and Werner H J 1993 J. Chem. Phys. 99 5219
[35] Knowles P J, Hampel C and Werner H J 2000 J. Chem. Phys. 112 3106
[36] Cocke C L 1979 Phys. Rev. A 20 749
[37] Watson R L, Sampoll G, Horvat V and Heber O 1996 Phys. Rev. A 53 1187
[38] Ben-Itzhak I, Ginther S G and Carnes K D 1993 Phys. Rev. A 47 2827
[1] Nd L-shell x-ray emission induced by light ions
Xian-Ming Zhou(周贤明), Jing Wei(尉静), Rui Cheng(程锐), Yan-Hong Chen(陈燕红),Ce-Xiang Mei(梅策香), Li-Xia Zeng(曾利霞), Yu Liu(柳钰), Yan-Ning Zhang(张艳宁), Chang-Hui Liang(梁昌慧), Yong-Tao Zhao(赵永涛), and Xiao-An Zhang(张小安). Chin. Phys. B, 2022, 31(6): 063204.
[2] Studies of K-shell x-ray energy shifts induced by MeV/u heavy ions
Song Zhang-Yong(宋张勇), Yang Zhi-Hu(杨治虎), Shao Jian-Xiong(邵剑雄), Cui Ying(崔莹), Zhang Hong-Qiang(张红强), Ruan Fang-Fang(阮芳芳), Du Juan(杜鹃), Gao Zhi-Min(高志民), Yu De-Yang(于得洋), Chen Xi-Meng(陈熙萌), and Cai Xiao-Hong(蔡晓红). Chin. Phys. B, 2009, 18(4): 1443-1450.
[3] Multiple ionization of argon accompanied by electron loss and capture of 0.22--6.35 MeV Cq+ ions
Chen Lin(陈林), Chen Xi-Meng(陈熙萌), Shao Jian-Xiong(邵剑雄), Lu Yan-Xia(鲁彦霞), Ding Bao-Wei(丁宝卫), Cui Ying(崔莹), Gao Zhi-Min(高志民), Liu Yu-Wen(刘玉文), Du Juan(杜娟), Xie Jiang-Shan(谢江山), Sun Guang-Zhi(孙光智), and Liu Zhao-Yuan(刘兆远). Chin. Phys. B, 2007, 16(8): 2378-2383.
No Suggested Reading articles found!