CONDENSED MATTER: ELECTRONIC STRUCTURE, ELECTRICAL, MAGNETIC, AND OPTICAL PROPERTIES |
Prev
Next
|
|
|
Interaction region of magnon-mediated spin torques and novel magnetic states |
Zai-Dong Li(李再东)1,2,3,†, Qi-Qi Guo(郭奇奇)1, Yong Guo(郭永)4, Peng-Bin He(贺鹏斌)5, and Wu-Ming Liu(刘伍明)6 |
1 Department of Applied Physics, Hebei University of Technology, Tianjin 300401, China; 2 State Key Laboratory of Quantum Optics and Quantum Optics Devices, Shanxi University, Taiyuan 030006, China; 3 School of Science, Tianjin University of Technology, Tianjin 300384, China; 4 Department of Physics and State Key Laboratory of Low-Dimensional Quantum Physics, Tsinghua University, Beijing 100084, China; 5 School of Physics and Electronics, Hunan University, Changsha 410082, China; 6 Beijing National Laboratory for Condensed Matter Physics, Institute of Physics, Chinese Academy of Sciences, Beijing 100080, China |
|
|
Abstract We determine the region in which the magnon-mediated spin torques exist. This region can be controlled by the spin waves. In terms of stability analysis of magnetization dynamics based on the spin-wave background, we obtain the instability conditions of spin waves. With these results, we find the relationship between unstable regions and the formation of Akhmediev breather, Kuznetsov-Ma breather and rogue waves. We establish the phase diagram of some novel magnetic excitaions.
|
Received: 15 April 2021
Revised: 15 April 2021
Accepted manuscript online: 25 May 2021
|
PACS:
|
75.78.-n
|
(Magnetization dynamics)
|
|
75.40.Gb
|
(Dynamic properties?)
|
|
72.25.Ba
|
(Spin polarized transport in metals)
|
|
Fund: Project supported by the National Natural Science Foundation of China (Grant No. 61774001), the Natural Science Foundation of Hebei Province of China (Grant No. F2019202141), and the Program of State Key Laboratory of Quantum Optics and Quantum Optics Devices, Shanxi University, China (Grant No. KF201906). |
Corresponding Authors:
Zai-Dong Li
E-mail: lizd@email.tjut.edu.cn
|
Cite this article:
Zai-Dong Li(李再东), Qi-Qi Guo(郭奇奇), Yong Guo(郭永), Peng-Bin He(贺鹏斌), and Wu-Ming Liu(刘伍明) Interaction region of magnon-mediated spin torques and novel magnetic states 2021 Chin. Phys. B 30 107506
|
[1] Kosevich A M, Ivanov B A and Kovalev A S 1990 Phys. Rep. 194 117 [2] Mikeska H J and Steiner M 1991 Adv. Phys. 40 191 [3] Schryer N L and Walker L R 1974 J. Appl. Phys. 45 5406 [4] Slonczewski J C and Magn J 1996 Magn. Mater. 159 L1 [5] Berger L 1996 Phys. Rev. B 54 9353 [6] Li Z and Zhang S 2004 Phys. Rev. Lett. 92 207203 [7] Li Z D, Liang J Q, Li L and Liu W M 2004 Phys. Rev. E 69 066611 [8] He P B and Liu W M 2005 Phys. Rev. B 72 064410 [9] Tatara G and Kohno H 2004 Phys. Rev. Lett. 92 086601 [10] Li Z D, Li Q Y, Wang X R, Liu W M and Liang J Q 2010 J. Phys.: Condens. Matter. 22 216001 [11] Wang W W, Albert M, Beg M, Bisotti M A, Chernyshenko D, Hawke I and Fangohr H 2015 Phys. Rev. Lett. 114 087203 [12] Li Z D, Cui H, Li Q Y and He P B 2018 Annals. Phys. 388 390 [13] Zhao F, Li Z D, Li Q Y, Wen L, Fu G S and Liu W M 2012 Annals. Phys. 327 2085 [14] Parkin S S P, Hayashi M and Thomas L 2008 Science 302 190 [15] Allwood D A, Xiong G, Faulkner C C, Atkinson D, Petit D and Cowburn R P 2005 Science 309 1866 [16] Hayashi M, Thomas L, Moriya R, Rettner C and Parkin S S P 2008 Science 320 209 [17] Hinzke D and Nowak U 2011 Phys. Rev. Lett. 107 027205 [18] Jiang X, Thomas L, Moriya R, Hayashi M, Bergman B, Rettner C and Parkin S S P 2010 Nat. Commun. 1 25 [19] Hirsch J E 1999 Phys. Rev. Lett. 83 1834 [20] Edelstein V M 1990 Solid. State. Commun. 73 233 [21] Chernyshov A, Overby M, Liu X, Furdyna J, Lyandageller Y and Rokhinson L P 2009 Nat. Phys. 5 656 [22] Ando K, Takahashi S, Harii K, Sasage K, Ieda J and Maekawa S 2008 Phys. Rev. Lett. 101 036601 [23] Liu L Q, Moriyama T, Ralph D C and uhrman R A 2011 Phys. Rev. Lett. 106 036601 [24] Miron I M, Garello K, Gaudin G, Zermatten P J, Costache M V and Auffret S 2011 Nature 476 189 [25] Liu L Q, Pai C F, Li Y, Tseng H W, Ralph D C and Buhrman R A 2012 Science 336 555 [26] Emori S, Bauer U, Ahn S M, Martinez E and Beach G S D 2013 Nat. Mater. 12 611 [27] Swaving A C and Duine R A 2011 Phys. Rev. B 83 054428 [28] Cheng R, Xiao J, Niu Q and Brataas A 2014 Phys. Rev. Lett. 113 057601 [29] Moon J H, Seo S M, Kim K W, Ryu J, Lee H W, McMichael R D and Stiles M D 2013 Phys. Rev. B 88 184404 [30] Yu X Z, Kanazawa N, Onose Y, Kimoto K, Zhang W Z, Ishiwata S, Matsui Y and Tokura Y 2011 Nat. Mater. 10 106 [31] Romming N, Hanneken C, Menzel M, Bickel J, Wolter B, Bergmann K von, Kubetzka A and Wiesendanger R 2013 Science 341 636 [32] Bu K M, Kwon H Y, Kang S P, Kim H J and Won C 2013 J. Magn. Magn. Mater. 343 32 [33] Fert A, Cros V and Sampaio J 2013 Nat. Nanotechnol. 8 152 [34] Moriya T 1960 Phys. Rev. 120 91 [35] Heinze S, Bergmann K V, Menzel M, Brede J, Kubetzka A, Wiesendanger R, Bihlmayer G and Blügel S 2011 Nat. Phys. 7 713 [36] Chen G, Zhu J, Quesada A, Li J, N’Diaye A T, Huo Y, Ma T P, Chen Y, Kwon H Y, Won C, Qiu Z Q, Schmid A K and Wu Y Z 2013 Phys. Rev. Lett. 110 177204 [37] Ryu K S, Thomas L, Yang S H and Parkin S S P 2013 Nature Nanotechnol. 8 527 [38] Yang J H, Li Z L, Lu X Z, Whangbo M H, Wei S H, Gong X G and Xiang H J 2012 Rev. Lett. 109 107203 [39] Pfleiderer C, Julian S R and Lonzarich G G 2001 Nature 414 427 [40] Leyraudet N D, Walker I R, Taillefer L, Steiner M J, Julian S R and Lonzarich G G 2003 Nature 425 595 [41] Uchida M, Onose Y, Matsui Y and Tokura Y 2006 Science 311 359 [42] Meckler S, Mikuszeit N, PreBer A, Vedmedenko E Y, Pietzsch O and Wiesendanger R 2009 Phys. Rev. Lett. 103 157201 [43] Bass J and Pratt W P 2007 J. Phys. Condens. Matter 19 183201 [44] Chumak A, Vasyuchka V, Serga A and Hillebrands B 2015 Nat. Phys. 11 453 [45] Kajiwara Y, Harii K, Takahashi S, Ohe J, Uchida K and Mizuguchi M 2010 Nature 464 262 [46] Cornelissen L, Liu J, Duine R, Youssef J B and Wees B Van 2015 Nat. Phys. 11 1022 [47] Yuan W, Zhu Q, Su T, Yao Y Y, Xing W Y and Chen Y Y 2018 Sci. Adv. 4 1098 [48] Lebrun R 2018 Nature 561 222 [49] Slonczewski J C 2010 Phys. Rev. B 82 054403 [50] Han D S, Kim S K, Lee J Y, Hermsdoerfer S J, Schultheiss H, Leven B and Hillebrands B 2009 Appl. Phys. Lett. 94 112502 [51] Yan P, Wang X S and Wang X R 2011 Phys. Rev. Lett. 107 177207 [52] Hinzke D and Nowak U 2011 Phys. Rev. Lett. 107 027205 [53] Kovalev A A and Tserkovnyak Y 2012 Euro. Phys. Lett. 97 67002 [54] Jiang W 2013 Phys. Rev. Lett. 110 177202 [55] Moriyama T, Takei S, Nagata M, Yoshimura Y, Matsuzaki N and Terashima T 2015 Appl. Phys. Lett. 106 162406 [56] Woo S, Delaney T and Beach G S 2017 Nat. Phys. 13 448 [57] Wang Y, Zhu D P, Yang Y M, Lee K, Mishra R, Go G, Oh S H, Kim D H, Cai K M, Liu E, Pollard S D, Shi S Y, Lee J, Teo K L, Wu Y H, Lee K J and Yang H 2019 Science 366 1125 [58] Hansson T, Modotto D and Wabnitz S 2013 Phys. Rev. A 88 023819 [59] Li Z D, Li Q Y, Xu T F and He P B 2016 Phys. Rev. E 94 042220 [60] Li L, Li Z D, Malomed B A, Mihalache D and Liu W M 2005 Phys. Rev. A 72 033611 [61] Guo B L, Ling L M and Liu Q P 2012 Phys. Rev. E 85 026607 [62] Toenger S, Genty G, Dias F, Erkintalo M and Dud-ley J M 2015 Sci. Rep. 5 10380 [63] Zhao L C and Ling L 2016 J. Opt. Soc. Am. B 33 850 [64] Baronio F, Conforti M, Degasperis A, Lombardo S, Onorato M and Wabnitz S 2014 Phys. Rev. Lett. 113 034101 [65] Zakharov V E and Gelash A A 2013 Phys. Rev. Lett. 111 054101 [66] Li Q Y, Xie Z W, Li Lu, Li Z D and Liang J Q 2004 Ann. Phys. 312 128 [67] Li Z D, Li Q Y, He P B, Bai Z G and Sun Y B 2007 Ann. Phys. 322 2945 [68] Zheng Z X, Li Q Y, Li Z D, Wang S X, Xu L P and Wen T D 2009 Physics 324 1612 [69] Akhmediev N and Korneev V I 1986 Theor. Math. Phys. 69 1089 [70] Dudley J M, Genty G, Dias F, Kibler B and Akhmediev N 2009 Opt. Express. 17 21497 [71] Kuznetsov E 1977 Sov. Phys. Dokl. 22 507 [72] Ma Y C 1979 Stud. Appl. Math. 60 43 [73] Kibler B, Fatome J, Fnot C, Millot G and Genty G 2012 Sci. Rep. 2 463 [74] Peregrine D H 1983 J. Aust. Math. Soc. Ser. B 25 16 [75] Kibler B, Fatome J, Finot C and Millot G 2010 Nature Phys. 6 790 [76] Takhtajan L A 1977 Phys. Lett. 64 235 |
No Suggested Reading articles found! |
|
|
Viewed |
|
|
|
Full text
|
|
|
|
|
Abstract
|
|
|
|
|
Cited |
|
|
|
|
Altmetric
|
blogs
Facebook pages
Wikipedia page
Google+ users
|
Online attention
Altmetric calculates a score based on the online attention an article receives. Each coloured thread in the circle represents a different type of online attention. The number in the centre is the Altmetric score. Social media and mainstream news media are the main sources that calculate the score. Reference managers such as Mendeley are also tracked but do not contribute to the score. Older articles often score higher because they have had more time to get noticed. To account for this, Altmetric has included the context data for other articles of a similar age.
View more on Altmetrics
|
|
|