
基本信息 |
部? 门: 大学物理教学中心 职? 称: 教授 邮? 箱: dlwang@xtu.edu.cn 办公室:物理学院东楼310
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学习工作经历 |
1998年8月—2001年6月 湘潭大学凝聚态物理专业 攻读硕士研究生 2001年7月—至今 湘潭大学物理与光电工程学院工作 (其中2001年7月—2004年12月 湘潭大学物理与光电工程学院攻读博士研究生; 2006年1月—2009年9月 南京航空航天大学攻读博士后; 2008年1月—2008年6月 中国科学院物理所访问学者。) |
研究方向 |
1 周期性原子链中的非线性动力学性质 2 超冷玻色-爱因斯坦凝聚体中的非线性动力学性质 3 超冷原子、半导体量子点、半导体量子阱电磁诱导透明介质中的非线性光学性质 |
科研项目 |
1主持过湖南省自科基金:玻色-爱因斯坦凝聚体中的非线性动力学 2主持过江苏省博士后科研基金:几类典型外部势阱中玻色-爱因斯坦凝聚体中的孤立子行为 3主持过湖南省教育厅项目:玻色-爱因斯坦凝聚体的基态特性 4 主持过湖南省教育厅重点项目:电磁感应透明介质中多组分光传输性质的研究 5 参加过国家自科基金项目:碳纳米管环和有限宽环中持续电流的量子尺寸效应 6 参加过国家自科基金项目:碳纳米管及其分子器件的物理性能研究 7 参加过教育部重点项目:碳纳米管的物理性能及其应用研究 8 参加过国家自科基金重点项目:基于微纳技术二维材料器件的多场耦合失效机理研究子课题“多场耦合失效机理的计算分析 |
代表性成果(专著、论文和专利等) |
1) D. L. Wang,X. H. Yan, And W. M. Liu, Localized gap-soliton trains of Bose-Einstein condensates in an optical lattice, Phys. Rev. E, 2008, 78, 026606 2) D. L. Wang,and X. H. Yan. Soliton on the semi-infinite band gap of BEC in an optical lattice, Int. J. Mod. Phys. B, 2011, 25, 781 3) D. L. Wang, R. S. Yang, and Y. T. Yang, Dark Solitons in FPU Lattice Chain, Commun. Theor. Phys., 2007, 48, 917 4) Wang D. L., Yan X. H., and Wang F. J., Dynamical stability of gap soliton of onedimensional condensate in optical lattices with strong interatomic interaction, Chin. Phys. Lett., 2007, 24, 1817 5) D. L. Wang, and X. H. Yan, Y. Tang, Asymmetric envelope and hole solitons in a monoatomic chain with Kac-Baker-like long-range interaction potential, J. Phys. Soc. Jpn, 2004,73, 123 6) D. L. Wang, X. H. Yan, Y. Tang, Y. F. Xiao, and R. S. Yang, Solitons in a monoatomic chain with Kac-Baker-like long-range interaction potential, Int. J. Mod. Phys. B, 2004, 18, 2713 7) D. L. Wang, X. H. Yan, and Y. Tang, Ground-state properties of a Bose-Einstein condensate confined in an anharmonic external potential, Chin. Phys., 2004, 13, 2030 8) D. L. Wang, X. H. Yan, and Y. Tang, An envelope soliton in a nonlinear chain with the Power-law dependence of long-range interaction, Chin. Phys. Lett., 2003, 20, 554 9) Yan-chao She, Xuejun Zheng+, DenglongWang+, and Weixi Zhang. Controllable double tunneling induced transparency and solitons formation in a quantum dot molecule. Optics Express, 2013, 21, 017392 10) X. Q. Luo, D. L. Wang?, Z. Q. Zhang, J. W. Ding, and W. M. Liu. Nonlinear optical behavior of a four-level quantum well with couple relaxation of optical and longitudinal phonons,Phys. Rev. A, 2011, 84, 033803 11) Hong Tang, Deng-Long Wang?, Yan-chao She, Jian-Wen Ding, and Si-guo Xiao. Dynamical analysis of temporal soliton with high order effects and cross-coupling relaxation of longitudinal optical phonons in double quantum wells, Eur. Phys. J. D, 2016, 70, 60492 12) She Yan-Chao, ?Zheng Xue-Jun?, Wang DengLong? and Ding Jian-Wen . High Efficiency Four-Wave Mixing with Relaxation Coupling of Longitude-Optical Phonons in Semiconductor Quantum Wells. Commun. Theor. Phys. 2015, 63, 599 13) She Yan-Chao, ?Zheng Xue-Jun?, Wang DengLong?. Enhancement of four-wave mixing process in a four-level double semiconductor quantum well. Chin. Phys. B, 2014, 23 , 124202 14) Xiao-Qing Luo, Deng-Long Wang?, Yan-Chao She, Heng Fan and Wu-Ming Liu. Adjustable electromagnetically induced transparency and absorption, optical controlled-phase gate in semiconductor quantum wells. Eur. Phys. J. D, 2014, 68, 40429 15) Kuanhong Zeng, Denglong Wang+, Yanchao She and Xiaoqin Luo. The formation and transformation of the spatial weak-light bright and dark solitons in a quantum dot molecule with the interdot tunneling coupling. Eur. Phys. J. D, 2013, 67, 40197 16) Zhang-Ming He, Deng-Long Wang+, Yan-Chao She, Jian-Wen Ding, and Xiao-Hong Yan, Nonperiodic Oscillation of Bright Solitons in Condensates with a Periodically Oscillating Harmonic Potential. Z. Naturforsch. 2012, 67, 723 ?17) Zhang-Ming He, Deng-Long Wang+, Jian-Wen Ding, and Xiao-Hong Yan, Reflection-Transmission Transition of Bright-Bright Solitons Collision in Two Species Condensates with Repulsive Interspecies Interactions. Commun. Theor. Phys., 2012, 58, 381 18) Zhang-Ming He, Deng-Long Wang+, Jian-Wen Ding, and Xiao-Hong Yan, Controlling Soliton Collisions of Condensates by Time-Dependence of Both Interactions and External Potential. Commun. Theor. Phys., 2012, 57 , 795 19) Z. M. He, D. L. Wang+, J. W. Ding, and X. H. Yan, Effect of interspecies interactions on the collision properties of bright-bright solitons in two-species Bose-Einstein condensates. Eur. Phys. J. D, 2012, 66, 20678 20) Yanchao She, Denglong Wang+, Weixi Zhang, Zhiqiang Zhang, and Jianwen Ding, Collision characteristics between two temporal untraslow vector optical solitons in a five-level V type system, Eur. Phys. J. D, 2011, 61, 181 21) Zhi Qiang Zhang, Deng Long Wang+, Xiao Qing Luo, Zhang Ming He, and Jian Wen Ding. Controlling of fusion of two solitons in a two-component condensate by an anharmonic external potential,Chin. Phys. Lett., 2011, 28, 050305 22) Zhi Qiang Zhang, Deng Long Wang+, Xiao Qing Luo, and Jian Wen Ding.. Controlling the collision between two solitons in a two-component condensate by interspecies interactions,Commun. Theor. Phys., 2011, 56, 440 23) Yanchao She, Denglong Wang+, Weixi Zhang, Zhangming He, and Jianwen Ding, Formation and interaction characteristics of two-component spatial weak-light soliton in a four-level double-∧ type system, J. Opt. Soc. Am. B, 2010, 27, 208 24) Xi Yu-Dong, Wang D. L.+, He Zhang-Ming, and Ding Jian-Wen, Controlling the motion of solitons in BEC by a weakly periodic potential, Chin. Phys. B, 2009, 18, 0939 25) W. X. Zhang, D. L. Wang+, Z. M. He, F. J. Wang, and J. W. Ding, Modulating the amplitude of dark soliton by scattering-length management in Bose-Einstein condensates, Phys. Lett. A , 2008, 372, 4407 26) He Z. M., Wang D. L.+, Zhang W. X., Wang F. J., and Ding J. W., Fission and Fusion of Two Bright Solitons in a Growing Bose–Einstein Condensate, Chin. Phys. Lett., 2008, 25, 3158 27) He Z. M., Wang D. L.+, Zhang W. X., Wang F. J., and Ding J. W., Controlling the amplitude of soliton in a growing Bose-Einstein condensate by means of Feshbach resonance, Chin. Phys. B, 2008, 17, 3640 ?28) Wang F. J., Yan X. H., Wang D. L., Atomic population oscillations for a Bose-Einstein condensate in a asymmetric three-well potential, Int. J. Mod. Phys. B, 2009, 23, 383. 29) Feng Jiao Wang, Xiao Hong Yan, Deng Long Wang, and Jian Wen Ding. Exact bright self-similar solitary waves in an expulsive parabolic potential. Mod. Phys. Lett. B., 2009, 23, 2311 30) Wang Feng-Jiao, Ding Jian-Wen, Yan Xiao-Hong, and Wang Deng-Long,Gain/loss effect on a bright solitary wave in a cigar-shaped attractive condensate in the presence of an expulsive parabolic potential,Chin. Phys. B, 2009, 18, 1737 31) Z. H. Guo, X. H. Yan, Y. R. Yang, Y. X. Deng, D. Lu, and D. L. Wang, Dissociation of Water Molecules Induced by Charged-Defective Carbon Nanotubes, J. Phys. Chem. C, 2008, 112 , 4618 32) Y. Xiao, X.H. Yan, D.L. Wang and Y. Zhang, Surface and quantum-size effects on the specific heat of layered and nonlayered nanotubes, Eur. Phys. J. B, 2008, 66, 433 33) Wang F. J., Yan X. H., Wang D. L., Small Amplitude Solitons in Bose-Einstein Condensates with External Perturbation, Chin. Phys. Lett., 2008, 25, 4 34) X. H. Yan, Y. Xiao, J. W. Ding, Z. H. Guo, Y. R. Yang and D. L. Wang, Density functional calculations of carbon nanotubes: Behavior of double-walled nanotubes compared to classical cylindrical capacitors, Phys. Rev. B, ?2007, 75, 195442 35)J.X. Cao, X. H. Yan, J.W. Ding and D.L. Wang, Band structure of carbon nanotubes:sp3s* TB model, J. Phys: Conden. Matter,2001, 13,L271 36) J. X. Cao, X. H. Yan, J. W. Ding, D. L. Wang and Di Lu, Electronic properties of single-walled carbon nanotubes, J. Phys. Soc. Jpn., 2002, 71, 1339 ?37) J. W. Ding, X. H. Yan, J. X. Cao, and D. L. Wang, Quantum dynamics of one-dimensional nanocrystalline solids, Chin. Phys. Lett. 2002, 19, 1430 38) Ding J. W., Yan X. H., Cao J. X., Wang D. L., Tang Y . and Yang Q. B., Curvature and strain effects on electronic properties of single-wall carbon nanotubes, J. Phys.: Condens. Matter, 2003, 15, L439 ?39) ?Yao-yong Dong, Denglong Wang?, Yin Wang, and Jianwen Ding. Matching group velocity of bright and/or dark solitons via double-dark resonances. Phys. Lett. A, 2018, 382, 2006 40) ?Y. Wang, J. W. Ding, D. L. Wang, and W. M. Liu, Intrinsical localization of both topological (anti-kink) envelope and gray (black) gap solitons of the condensed bosons in deep optical lattices, Chaos 2020, 30, 123133 41) ?Y. Wang, J. W. Ding, and D. L. Wang, Controllable double tunneling induced optical soliton storage in linear triple quantum dot molecules, Eur. Phys. J. D, 2020, 74, 190 42) Y. Y. Dong, X. J. Zheng, D. L. Wang, and J. W. Ding, Fluctuation-enhanced Kerr nonlinearity in an atom-assisted optomechanical system with atom-cavity interactions, Optics Express, 2021, 29, 5367 43) Y. Y. Dong, X. J. Zheng, D. L. Wang, and J. W. Ding, Optomechanically controllable double electromagnetically induced transparency and parametric amplification in a quantum well optomechanical system, Optik, 2022, 265, 169500 44) ?Sijie Zhou, Denglong Wang?, Yaoyong Dong, Zhengyang Bai, and Jianwen Ding, Controllable storage and retrieval of optical solitons in triple quantum dot molecules by inter-dot tunneling coupling effect, Phys. Lett. A, 2022, 448, 128320 45) Yang Xuan, Wang Yin, Wang Deng -Long?, and Ding Jian –Wen, Controlling collision properties of solitons in five-level M-type triple quantum dot electromagnetically induced transparency medium by inter-dot tunneling coupling, Acta Phys. Sin. 2020, 69, 174203 46) Yaoyong Dong, Xuejun Zheng, Denglong Wang, and Peng Zhao, Electromagnetically- induced- absorption-like ground state cooling in a hybrid optomechanical system, Chin. Phys. B 2025, 34, 044203 47) Dong Yaoyong, Wu Yi, Zheng Xuejun, Wang Denglong, Zhao Peng, Ultrahigh-resolution mass sensing based on bound states in continuum domain in double-cavity optomechanical system* Acta Phys. Sin. 2025, 74, 134202 48) Zhihao Zhang, Tiantian Li, Xiao-Dong Bai, Yunbo Zhang, and Denglong Wang, High-order rogue waves excited from incident momentum modulation in two-component Bose–Einstein condensates, Chaos 2026, 202, 117619
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荣誉奖励 |
1. 2017年“微纳机敏材料及其器件性能的调控”获湖南省人民政府主办的湖南省自然科学奖二等奖; 2. 2007年“纳米管、纳米线的结构与性能及其功能器件研究” 获湖南省人民政府主办的湖南省科学技术进步奖三等奖; 3. 指导硕士生罗晓清于2012年获得湘潭大学第17届研究生校长优秀奖,2013年获得湖南省优秀硕士论文优秀奖; 4. 2010年指导硕士研究生张蔚曦撰写的论文《散射长度对玻色-爱因斯坦凝聚体中暗孤子幅度的调控》在湖南省第13届自然科学优秀学术论文中荣获三等奖; 5. 2012年指导硕士研究生罗晓清撰写的论文《耦合的纵波光学声子驰豫对四能级半导体量子阱非线性光学行为的调控》在湖南省第14届自然科学优秀学术论文荣获二等奖; 6. 2009年《考虑次近邻相互作用下一维单原子链中的孤立波》被评为湖南省第九届自然科学优秀学术论文三等奖; 7. 2006 年,《计及Kac-Baker-like 长程相互作用下单原子链中的非对称包络孤子和洞孤子》获得湘潭市优秀论文一等奖; 8. 2009年《光晶格势阱中的玻色-爱因斯坦凝聚体中的局域隙孤子链》获得湘潭市优秀论文一等奖; 9. 2012年,指导学生佘彦超撰写的论文《四能级双 10. 2012年,王登龙,湘潭大学第17届研究生校长优秀奖的指导教师; 11. 主编了“十一五”和“十二五”普通高等教育本科国家级规划教材《大学物理学》上、下册和《大学物理学学习指导》; 12. 主编了“十三五”普通高等教育国家级规划教材《大学物理学(力学与电磁学)》、《大学物理学—热学分册》,《大学物理学—现代物理分册》,《大学物理学—光学分册》教材; 13. “综合交叉、协同培养——地方高校物理类创新型人才培养的改革与实践”获2019年湖南省教育厅教学成果二等奖; 14. 2019负责“大学物理学”课程获批湖南省一流本科课程; 15. 2014年被教育部大学物理课程教学指导委员会聘任为2014-2017年教育部大学物理课程教学指导委员会中南地区工作委员会委员; 16. 2019年被教育部高等学校大学物理课程教学指导委员会聘任为2018-2022年教育部高等学校大学物理课程教学指导委员会大中物理教育衔接作委员会委员。
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