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郭光华
个人简介

郭光华

教授,博士生导师。 1988年毕业于吉林大学物理系,获理学学士和硕士学位;1999年毕业于莫斯科大学物理系,获数理博士学位。1999年至今在中南大学物理与电子学院从事科研与教学工作。2000年评为教授,2004年评为博士生导师,2013年晋升为二级教授。担任中国固体物理研究会常务理事、湖南省物理学会常务理事,国家科技奖励评审专家,国家自然科学基金、高校博士点科研基金和多个省、市自然科学基金评审专家,《中南大学学报(自然科学版)、(英文版)》和《现代物理》编委,“固体物理”国家精品课程和国家精品资源共享课程负责人,Appl. Phys. Lett., Phys. Rev. B等国内外科学期刊的审稿人。主要从事磁学和自旋电子学研究,主持多项国家级和省部级科研项目,发表学术论文100多篇。


欢迎同学报考我的博士、硕士研究生。

联系方式:E-mail: guogh@mail.csu.edu.cn; Tel: 0731-88830517, 13973126855


科研方向
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主要研究领域:

1. 纳米磁学,自旋动力学

2. 自旋电子学及自旋器件

3. 低维体系的电子结构和自旋输运

4. 磁性材料

主持的部分科研项目:

1. 可重构的磁构型磁子晶体及其动态调控。国家自然科学基金(11674400),2017-2020。

2. 磁子自旋流驱动的畴壁动力学研究。国家自然科学基金(11374373),2014-2017。

3. 自旋纳电子材料的微磁结构和反磁化机制的研究。国家自然科学基金(60571043),2006-2008。

4. 全磁子畴壁自旋器件的关键问题研究。湖南省自然科学基金重点项目(13JJ2004),2013-2015。

5. 纳米线畴壁动力学研究。教育部,博士点基金-博导类(20120162110020),2013-2015。

6. 反铁磁耦合多层膜体系磁性的微磁学研究。湖南省自然科学基金重点项目(07JJ3103),2007-2009。


学术成果
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发表的主要论文

Xi-guang Wang, Zhi-xiong Li, Zhen-wei Zhou, Yao-zhuang Nie, Qing-lin Xia, Zhong-ming Zeng, L. Chotorlishvili, J. Berakdar, and Guang-hua Guo*. Conversion of electronic to magnonic spin current at a heavy-metal magnetic-insulator interface. Phys. Rev. B 95, 020414(R) (2017)

Xi-guang Wang, Alexander Sukhov, Levan Chotorlishvili, Chenglong Jia, Guang-hua Guo, Jamal Berakdar. Electrically driven magnetic antenna based on multiferroic composites. Journal of Physics: Condensed Matter. 29, 095804 (2017)

X.-G. Wang, L. Chotorlishvili, G.-H. Guo, A. Sukhov, V. Dugaev, J. Barna, and J. Berakdar. Thermally induced magnonic spin current, thermomagnonic torques and domain wall dynamics in the presence of Dzyaloshinskii-Moriya interaction. Phys. Rev. B 94, 104410 (2016)

D. Wang*, Yulan Dong, Yan Zhou, Xi-guang Wang, Jun He, Guang-hua Guo*. Domain wall motion driven by adiabatic spin transfer torque through excitation of nonlinear dynamics. J. Phys.: Condens. Matter. 28 (20), 206005 (2016).

Zheng-min Xiong, Su-qin Ge, Xi-guang Wang, Zhi-xiong Li, Wei Tang, Qing-lin Xia, Dao-wei Wang, Yao-zhuang Nie, Zhong-ming Zeng, Guang-hua Guo*. Spin waves in the soft layer of exchange-coupled soft/hard bilayers. AIP Advances 6, 055220 (2016).

Zhi-xiong Li, Meng-ning Wang, Yao-zhuang Nie, Dao-wei Wang, Qing-lin Xia, Wei Tang, Zhong-ming Zeng, Guang-hua Guo*. Spin-wave propagating spectrum in magnetization-modulated cylindrical nanowires. J. Magn. Magn. Mater. 414, 49-54 (2016)

Can Wang, Qinglin Xia*, Yaozhuang Nie, Rahman, Mavlanjan, and Guanghua Guo*. Strain Modulated Bandgaps and Effective Masses of Puckered Arsenene. AIP Advances 6, 035204 (2016)

Xiaotao Hu, Chuan Qian, Fangmei Liu, Jia Sun*, Junliang Yang, Guang-hua Guo*, Yongli Gao. Low contact resistance in solid electrolyte-gated ZnO field-effect transistors with ferromagnetic contacts. J. Mater. Chem. C. 4, 150-156 (2016)

Xi-guang Wang, Guang-hua Guo*, Zhi-xiong Li, Dao-wei Wang, Yao-zhuang Nie, Wei Tang. Spin-wave propagation in domain-wall magnonic crystal. Europhys. Lett. 109, 37008 (2015).

Yao-zhuang Nie, Mavlanjan Rahman, Dao-wei Wang, Can Wang, Guang-hua Guo*. Strain induced topological phase transitions in monolayer honeycomb structures of group-V binary compounds. Sci. Rep. 5, 17980 (2015)

Guang-fu Zhang, Zhi-xiong Li, Xi-guang Wang, Yao-zhuang Nie, Guang-hua Guo*. Shape-tuned dynamic properties of magnetic nanoelements during magnetization reversal. J. Magn. Magn. Mater. 385, 402-406 (2015).

Zhi-xiong Li, Xi-guang Wang, Dao-wei Wang, Yao-zhuang Nie, Wei Tang, Guang-hua Guo*. Reconfigurable magnonic crystal consisting of periodically distributed domain walls in a nanostrip. J. Magn. Magn. Mater. 388, 10-15 (2015).

Can Wang, Qinglin Xia*, Yao-zhuang Nie, and Guang-hua Guo*. Strain-induced gap transition and anisotropic Dirac-like cones in monolayer and bilayer phosphorene. J. Appl. Phys. 117, 124302 (2015).

Mavlanjan Rahman, Yao-zhuang Nie, Guang-hua Guo*. First-principles study of the electronic structure and Magnetism of SrFe0.5Ru0.5O2. J. Phys. Chem. Solids 81, 88-92 (2015).

Mavlanjan Rahman, Yao-zhuang Nie, Guang-hua Guo*. Electronic structures and magnetism of SrFe1-xMnxO2: A theory investigation. J. Magn. Magn. Mater. 379, 117–123 (2015).

Guang-fu Zhang, Zhi-xiong Li, Xi-guang Wang, Yao-zhuang Nie, Guang-hua Guo. Shape-
manipulated spin-wave eigenmodes of magnetic nanoelements. Chin. Phys. B 24 (9), 097503 (2015).

Xi-guang Wang, Guang-hua Guo*, Yao-zhuang Nie, Dao-wei Wang, Zhong-ming Zeng, Zhi-xiong Li, Wei Tang. Microwave-assisted domain wall motion induced by alternating spin-polarized current. Phys. Rev. B 89, 144418 (2014)

Xi-guang Wang, Guang-hua Guo*, Yao-zhuang Nie, Dao-wei Wang, Zhong-ming Zeng, Zhi-xiong Li, Wei Tang. Current-driven domain wall motion enhanced by the microwave field. J. Appl. Phys. 116, 023904 (2014).

Xi-guang Wang, Guang-hua Guo*, Yao-zhuang Nie, D. Wang, Qing-lin Xia, Wei Tang, Zhong-ming Zeng. Steady-state domain wall motion driven by adiabatic spin-transfer torque with assistance of microwave field. Appl. Phys. Lett. 103, 262408(2013)

Mavlanjan Rahman, Yao-zhuang Nie, and Guang-hua Guo*. Electronic Structures and Magnetism of SrFeO2 under Pressure: A First-Principles Study. Inorganic Chemistry 52 (21), 12529-12534 (2013)

Xiong-fei Long, Guang-hua Guo*, Xin-hua Li, Qing-lin Xia, and Jin-fang Zhang. Electrodeposition of Sm-Co film with high Sm content from aqueous solution. Thin Solid Films548, 259-262 (2013)

Xi-guang Wang, Guang-hua Guo*, guang-fu Zhang, Yao-zhuang Nie, Qing-lin Xia. Spin-wave resonance reflection and spin-wave induced domain wall displacement. J. Appl. Phys. 113, 213904 (2013)

Xi-guang Wang, Guang-hua Guo*, Guang-fu Zhang, Yao-zhuang Nie, Qing-lin Xia. An analytical approach to the interaction of a propagating spin wave and a Bloch wall. Appl. Phys. Lett. 102, 132401-p1~p5 (2013)

D. Wang, Xi-guang Wang, and Guang-hua Guo*. Magnonic momentum transfer force on domain walls confined in space. Eur. Phys. Lett. 101, 27007-p1~p5 (2013)

Xi-guang Wang, Guang-hua Guo*, Guang-fu Zhang, Yao-zhuang Nie, Qing-lin Xia, Zhi-xiong Li. Spin-transfer torque induced domain wall ferromagnetic resonance in nanostrips. J. Magn. Magn. Mater. 332, 56-60 (2013)

Guang-fu Zhang, Guang-hua Guo*, Xi-guang Wang, Yao-zhuang Nie, Zhi-xiong Li. Effects of Spin-Polarized Current on Pulse Field-Induced Precessional Magnetization Reversal. AIP Advances2, 042127 (2012)

Xi-guang Wang, Guang-hua Guo*, Yao-zhuang Nie, Guang-fu Zhang, Zhi-xiong Li. Domain Wall Motion Induced by the Magnonic Spin Current. Phys. Rev. B 86, 054445 (2012)

Xi-guang Wang, Guang-hua Guo*, Guang-fu Zhang. Transition from reversible to irreversible magnetic exchange-spring processes in antiferromagnetically exchange-coupled hard/soft/hard trilayer structures. J. Magn. Magn. Mater. 323, 1722-1726 (2011)

Guang-hua Guo*, Guang-fu Zhang, Xi-guang Wang. Crossover from reversible to irreversible magnetic exchange-spring processes in antiferromagnetically exchange-coupled soft/hard bilayer structures. J. Appl. Phys. 108(4), 043919-1—043919-5 (2010)

Nianmei Han, Guanghua Guo*, Lamei Zhang, Guangfu Zhang, and Wen-bin Song. Magnetization reversal for Ni nanowires studied by micromagnetic simulations. J. Mater. Sci. Technol. 25(2), 151-154 (2009)

Guang-hua Guo*, Guang-fu Zhang, San-yuan Song, D. W. Wang, G. J. Bowden, P. A. J. de Groot. Irreversible magnetic exchange-spring processes in antiferromagnetic exchange-coupled bilayer systems. Appl. Phys. Lett. 93, 102505 (2008)

GUO Guang-Hua*, ZHANG Guang-Fu, SUN Li-Yuan, Peter A. J. de Groot. Phase diagram of antiferromagnetically exchange-coupled bilayer. Chin. Phys. Lett. 25 (7), 2634-2637 (2008)

Guang-hua Guo*, Hai-bei Zhang. The spin reorientation transition and first order magnetization process of TbMn6Sn6 compound. J. Alloys Compd. 448, 17-20 (2008)

HAN Nian-mei,GUO Guang-hua*,ZHANG Guang-fu,SONG Wen-bing,MEN Gao-fu. Domain wall structure transition during the magnetization reversal process in magnetic nanowires. Trans. Nonferrous Met. Soc. China 17, 1034-1037 (2007)

Guang-hua Guo*, Hai-bei Zhang. Magnetocrystalline anisotropy and spin reorientation transition of HoMn6Sn6 compound. J. Alloys Compd. 429,46-49 (2007)

GUO Guang-hua*, QIN Jiang, ZHANG Hai-bei. Magnetocrystalline anisotropy and spin reorientation transition of DyMn6Sn6 compound. Trans. Nonferrous Met. Soc. China, 17(3), 514-518 (2007)

Guo Guang-Hua*, Zhang Hai-Bei and R. Z. Levitin. Magnetic properties and magnetic phase diagrams of intermetallic compound GdMn2Ge2. Chinese Physics 12(6), 655-660 (2003)

Guo Guang-hua*. Exchange interactions and magnetic properties of intermetallic compounds.Trans. Nonferrous Met. Soc. China 13(1), 1-5 (2003)

Guo Guanghua, N. P. Kolmakova, R. Z. Levitin, A. Yu. Sokolov and D. A. Filippov. Peculiarities of Magnetic Properties in Ferrimagnets with Antiferromagnetic Intra-Sublattice Exchange Interaction. The Physics of Metals and Metallography Vol.93 Suppl.1, S1-S7 (2002)

Guo Guanghua, M. V. Eremin, N. P. Kolmakova, A. S. Lagutin and R. Z. Levitin. Magnetic Properties of the HoMn2Ge2 Intermetallic Compound. Phys. Solid State 44(11), 2091-2094 (2002)

Guo Guang-Hua*, Wu Ye, Zhang Hai-Bei, D.A. Filippov, R.Z. Levitin and V.V. Snegirev. Magnetic phase transition and the corresponding magnetostriction of intermetallic compounds RMn2Ge2 (R=Sm, Gd). Chinese Physics 11(6), 608-612 (2002)

Guo Guanghua, M. V. Eremin, A. Kirste, N. P. Kolmakova, A. S. Lagutin, R. Z. Levitin, M. von Ortenberg and A. A. Sidorenko. Magnetic Phase Transitions and Phase Diagrams of DyMn2Ge2. J. Exp. Theor. Phys. 93(4), 796-804 (2001)

Guo Guanghua, R.Z. Levitin, V.V. Snegirev and D.A. Filippov. Magnetostriction of SmMn2Ge2 and GdMn2Ge2 intermetallic compounds. Phys. Solid State 43(3), 496-500 (2001)

Guo Guanghua, R.Z. Levitin, A.Yu. Sokolov, V.V. Snegirev and D.A. Filippov. Study of ferrimagnets with negative interaction within one of the sublattices: magnetic phase diagram of Gd1-xLaxMn2Ge2 intermetallic compounds. J. Magn. Magn. Mater. 214, 301-308 (2000)

Guo Guanghua, R.Z. Levitin, V.V. Snegirev, D.A. Filippov, A.Yu. Sokolov. Magnetic phase diagram of the intermetallic compounds Gd1-xLaxMn2Ge2 and the effect of a field on transitions of the Mn subsystem from the antiferromagnetic into the ferromagnetic state. J. Exp. Theor. Phys. 90 (6), 979-986 (2000)