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内蒙古大学博士研究生导师简介:梁希侠

姓  名:
梁希侠
性别:
出生年月:
 
工作单位:
内蒙古大学
所在院系:
理工学院
职称:
教授
行政职务:
 
招生专业:
070201理论物理
研究领域:
理论物理与凝聚态物理
是否兼职:
指导博士生总数:
 
指导硕士生总数:
 
目前博士生数:
 
目前硕士生数:
 
 
  个人简介
  梁希侠 男,汉族, 教授,副校长
  内蒙古大学理工学院理论物理专业博士生导师;理论物理、凝聚态物理专业硕士生导师。
  享受国务院授予政府特殊津贴;
  内蒙古自治区有突出贡献中青年专家;
  全国教育系统劳动模范、被授予“人民教师奖章”,并作为全国50名模范教师代表之一,于1994年9月10日应中央邀请赴京参加第十个教师节,受到党和国家领导人接见并座谈;
  国家有突出贡献的中青年专家;
  内蒙古自治区优秀回国人员奖;
  宝钢教育基金奖——优秀教师奖获得者。
  1966.8毕业于内蒙古大学物理系(本科);1981.8内蒙古大学理论物理专业研究生毕业,获理学硕士学位。1987年任副教授,1992年任教授;
  1990年8月——1991年8月,加拿大滑铁卢大学应用数学系访问学者(博士后位置);1998年9月——12月,美国艾默里大学物理系,高级访问学者;2003年1月——4月,日本山口大学,工学部材料科学系,特聘教授。现任国家教育部“物理学与天文教学指导委员会专业物理与应用物理教学指导组”成员、全国“热力学与统计物理教学研究会”主任、内蒙古自治区自然科学基金委员会副主任。
  先后为物理专业、应用物理专业本科和研究生以及非物理专业学生讲授“热力学与统计物理”、“量子统计与多体论”、“固体物理”、“元激发理论”、“固体量子场论”、“普通物理”、“高等数学”等十余门课程,指导多名硕士、博士研究生获得相应的学位。编著教材两部(本科生、研究生教材各一部),发表过教学研究论文,多次参加全国性教学研究学术会议,主持国家教育部立项的面向21世纪教学改革研究项目。
  主要从事理论物理与凝聚态物理方面的研学研究,侧重基础理论,也涉足过实验和开发工作。先后主持完成国家自然科学基金项目8项,参加完成多项,主持内蒙古自治区科研项目多项。
  先后赴澳大利亚、德国、捷克、日本、美国、法国、俄罗斯等国参加国际学术会议,并曾任分会主席,被聘为"国际EXCON\'02会议"的国际学术顾问,多次出席全国性学术会议。
 
  获得奖项
  学术获奖
  1.1992年,内蒙古科技进步三等奖;
  2.1995年,国家教委科技进步三等奖;
  3.1996年,内蒙古教学成果奖一等奖;
  4.1998年,内蒙古科技进步三等奖;
  5. 2004年,国家精品课程《统计热力学》;
  6. 2005年 内蒙古自治区教学成果二等奖。
 
  著作及论文
  部分被SCI收录的论文:
  1. Effect of lattice vibration on exciton properties in piezoelectric crystals, Gu Shiwei and Liang Xixia, Scientia Sinica A (中国科学A), XXV (7), July 1982, 723.
  2. The polarons and their dead layers in semi-infinite polar crystals, X.X.Liang and S.W.Gu, Solild State Commun, 50(6), 505(1984).
  3. The interface polaron in polar-polar crystal, X.X.Liang, Solild State Commun. 55(3), 215(1985).
  4. Polaronic states in a slab of polar crystal, X.X.Liang S.W.Gu and D.L.Lin, Phys. Rev. B34(4), 2807(1986).
  5. Weak-coupling magnetopolarons in a slab of a polar crystal, X.X.Liang,Phys. Rev. B38(5), 3459(1988).
  6. Electron-phonon interaction in ternary mixed crystals, X.Wang and X.X.Liang, Phys. Rev. B42(14), 8915(1990).
  7. Electron-phonon interaction in a quantum well, X.X.Liang and X.Wang, Phys. Rev. B43(6), 5155(1991).
  8. Coupling of interface TO and LO phonons with electrons in quntum well and heterojunctions, X.X.Liang and S.G.Davison, Slid State Commun. 84(5), 581(1992).
  9. Interaction of interface optical phonons with an electron in an asymmetric quantum well. X.X.Liang, J.Phys. CM4, 9769(1992).
  10. Intermediate-coupling polaron in a ternary mixed crystal, X.X.Liang and Y.S. Zhang, Z. Phys. B91(4), 455(1993).
  11. Cyclotron effective mass of a polaron in a single quantum well, F.Q.Zhao, X.Wang and X.X.Liang, Phys. Lett. A 175,225(1993).
  12. Electron-optical-phonon interaction in a trilayer system ofpolar crystals, X. X. Liang and S. G. Davison, Surf. Sci., 298, 225(1993).
  13. Influence of interface phonons on a polaron near a polar semiconductive heterointerface, S.L.Ban, X.X.Liang and R.S.Zheng, Phys.Lett. A192, 110(1994).
  14. Properties of perfect confined modes and interface modes ofspin- waves in a ferromagnetic bilayer system, G.Yun, J.Yan, S.Ban and X.X.Liang, Surf.Sci. 318,
177(1994).
  15. Cyclotron resonance of two-dimensional interface polarons, S.L. Ban, X.X.Liang, R.S.Zheng, Phys. Rev. B51(4), 2351(1995).
  16. Effective-phonon approximation of polarons in ternary mixed crystals, X.X.Liang and J.S.Yang, Solid State Commun. 100(9), 629-634(1996).
  17. Effect of optical phonons on the binding energy of an exciton in a quantum well, X.X.Liang, S.L.Ban and R.S.Zheng, Journal of Luminescence, 72-74, 358
(1997).
  18. Electron-phonon interaction effects on surface states of polar crystals, X.X.Liang and Zuwei Yan, Surface Science, 400 (1-3),232 (1998).
  19. Interface polarons in a heterojunction with triangular bending-band, S. Ban and X.X.Liang, Eur. Phys. J. B5, 153-158 (1998).
  20. Effect of electron-phonon interaction on surface states of polar crystals, Zuwei Yan and, X. X. Liang, Solid State Commun., 110 (8), 451 (Apr. 26, 1999).
  21. Bound polarons in ternary mixed crystals, Xi Xia Liang, Zhiping Wang and Shiliang Ban, J. Luminescence, 87-89, 614 (2000).
  22. Effect of electron-phonon interaction on surface states in a ternary mixed crystal of polar crystal, Zu Wei Yan(闫祖威), Xi Xia Liang, Eur. Phys. J. B15, 531- 538(2000).
  23. Energy levels of a polaron in a finite parabolic quantum well, Feng-qi Zhao, Xi Xia Liang and Shiliang Ban, Int. J. Modern Physics B15(5), 527-535(2001).
  24. Interface-Optical Phonon-Assisted Tunneling in Double-Barrier Structures, Zu Wei Yan, X. X. Liang and S. L. Ban, Phys. Rev.B64, 125321 (2001).
  25. Specific heat of the spin-1/2 antiferromagnetic heisenberg chain, Yun Guo-Hong, Liang Xi-Xia, Chin. Phys. Lett. 18(9), 1262 (2001).
  26. Binding energy of a bound polaron in the finite parabolic quantum well, Modern Physics Letters, Feng-qi Zhao, Xi Xia Liang and Shiliang Ban, B15 (20),827-835(2001).
  27. Note to Electron-phonon interaction in ternary mixed crystals, X.X. Liang and S.L.Ban, J Luminescence, 94-95, 781-785 (2001).
  28. Transfer Matrix Method for Electron-IO-Phonon Interaction in Asymmetric Double-Barrier Structures, Zu Wei Yan and X. X. Liang, Int. J. Modern Physics B15(27), 3539-3549 (2001).
  29. Role of Interface Optical Phonons in Magneto-tunneling in Asymmetric Double-Barrier Structures, Zu Wei Yan and X. X. Liang, J. Appl. Phys.,91(2), 724 (2002).
  30. Polarons with spatially dependent mass in a finite parabolic quantum well, Zhao Feng-Qi, LIANG Xi-Xia, Chinese Physics Letters, 19 (7) 974(2002).
  31. Resonant tunneling in semiconductor multibarrier heterrostructures, Jian Gong, Shiliang Ban and Xi Xia Liang, Int. J. of Modern Physics B, Vol. 16, No. 30 (2002) 4607-4619.
  32. Optical phonon–assisted magnetotunneling peaks in GaAs’AlxGa1?xAs double-barrier structures, Zu Wei Yan and X. X. Liang, Phys. Rev. B66(23) 235324 (2002).
  33. Pressure tuning of strains in Zn1-xCdxSe/ZnSe single quantum wells, Z.Z.Guo, X.X.Liang, S.L.Ban, Physics Letters A, 306(2-3), 160-165 (2002).
  34. Influence of the spatially dependent effective mass on bound polarons in finite parabolic quantum wells, F. Q. Zhao, X. X. Liang and S. L. Ban, Eur. Phys. J. B33, 3-8 (2003).
  35. Pressure-induced increase of exciton-LO-phonon coupling a ZnCdSe/ZnSe quantum well,Z. Z. Guo, X. X. Liang, S. L. Ban, Phys. Stat. Sol.(b)238(1) 173-179 (2003).
  36. Cyclotron Resonance of Polarons in Ternary Mixed Crystals, Zhi Ping Wang, Xi Xia Liang, Eur. Phys. J. B33, 265-271 (2003).
  37. Binding energies of excitons in GaAs/AlAs quantum wells under pressure, Guojun Zhao, X. X. Liang, S. L. Ban, Modern Physics Letters B, Vol. 17, No. 16 (2003) 863-870.
  38. Conditions for the existence of interface spin waves in a biferromagnetic interface, G.H. Yun and X.X. Liang, Eur. Phys. J. B35 (2), 261 (September II 2003).
  39. Binding Energies of Donors in Quantum Wells under Hydrostatic Pressure, G. J. Zhao, X.X. Liang and S.L.Ban, Physics Letters A319(1-2) pp. 191-197(2003).
  40. Optical vibration modes and electron-phonon interaction in ternary mixed crystals of polar semiconductors, X. X. Liang and S. L. Ban, Chinese Physics, 13(1), 71-81, January 2004.
  41. Intermediate-coupling polaron properties in wurtzite nitride, 闫祖威,班士良,梁希侠, Physics Letters A326, 157 (2004/04/15).
  42. Resonant Tunneling in Parabolic Quantum Well Structures under Uniform Transverse Magnetic Field, Gong Jian, Liang Xi-Xia, Ban Shi-Liang, Chinese Physics, 14(1), 201-207 (2005)
  43. Polaron energy and effective mass in parabolic quantum wells, Wang Zhi-Ping, Liang Xi-Xia, Chinese Physics Letters, 22 (9), 2367(2005).
  44. On the Binding Energies of Excitons in Polar Quantum Well Structures in a Weak Electric Field, Wu Yun-Feng and Liang Xi-Xia, Chinese Physics, 14 (11), 2314-2319 (2005).
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