杨文星,长江大学物理与光电工程学院院长、教授、博士生导师,江苏省“青蓝工程”中青年学科带头人(2012),湖北省楚天学者特聘教授(2020),享受国务院特殊津贴专家(2021)。
2007年3月毕业于中国科学院武汉物理与数学研究所(提前毕业),获理学博士学位。攻读博士期间曾获中国科学院“院长优秀奖(个人)”(2005)、湖北省自然科学二等奖(2005),博士学位论文获湖北省优秀博士论文奖(2008)。
长期从事量子光学、非线性光学和纳米光子学领域的研究,先后主持和承担国家自然科学基金项目、总装863专项课题、国家重点研发计划子课题、江苏省自然科学基金、企业合作科研项目等各级各类项目多项。在Physical Review A, Nanophotonics, Optics Letters, Optics Express等国内外权威刊物上发表受国际同行好评论文120余篇,论文被国内外同行正面引用3100余次,单篇最高引用近200次,7篇论文引用超过100次,ESI高被引论文4篇、ESI热点论文4篇,H因子35。
科研成果先后获江西省自然科学三等奖(2017)、中国产学研合作促进会—“产学研合作创新奖(个人)”(2021)、湖北省自然科学二等奖(2023)、中国产学研创新成果奖二等奖(2023),曾入选全球学者库全球顶尖前10万名科学家。主要学术兼职有湖北省物理学会常务理事,荆州市荆州区第七届人大代表。
研究方向及兴趣:
1、原子相干和量子干涉效应相关的各种现象
2、低维材料体系超快光学现象及量子相干控制
3、微纳结构光学性质量子相干调控及应用
主要工作经历:
2019.6~至今 长江大学物理与光电工程学院 教授
2011.4~2019.5 东南大学物理学院 教授(破格)
2008.4~2011.3 东南大学物理学院 副教授(破格)
2008.1~2008.12 台湾清华大学光电所 博士后
2007.4~2008.3 东南大学物理学院 讲师
代表性科研项目及成果:
自2008年以来,完成了多个与微腔光子、纳米金属表面等离激元、低维半导体量子电子系统、以及微腔与金属耦合杂化体系的相互作用中量子光学以及非线性光学效应及其量子相干控制方面的研究课题(包括5项国家自然科学基金项目)。建立了微纳光量子物理实验平台,发展了光与微纳结构相互作用体系量子光学理论和量子相干操控方法,围绕微纳光量子物理领域取得了一批创新性研究成果,为基于微纳结构的量子相干调控、精密测量和精密传感等方面的应用提供基础。
代表性论文(2019年后)
(1) Shui, Tao; Yang, Wen-Xing*; Cheng, Mu-Tian; Lee, Ray-Kuang; Optical nonreciprocity and nonreciprocal photonic devices with directional four-wave mixing effect, Optics Express, 2022, 30: 6284-6299.
(2) Zeng, Jinfu; Cheng, Shubo*; Liu, Shuo; Zhang, Geng; Tao, Shahua; Yang, Wen-Xing*; Self-healing of the bored helico-conical beam, Optics Express, 2022, 30: 9924-9933.
(3) Wang, Xin; Yang, Wen-Xing*; Chen, Ai-Xi; Li, Ling; Shui, Tao; Li, Xiyun; Wu, Zhen; Phase-modulated single-photon nonreciprocal transport and directional router in a waveguide–cavity–emitter system beyond the chiral coupling, Quantum Science Technology, 2022, 7: 015025
(4) Chen, Ruoling; Li, Long; Jiang, Long; Yu, Xiangxiang; Zhu, Desheng; Xiong, Yan; Zheng, Dingshan*; Yang, Wen-Xing*; Small-diameter p-type SnS nanowire photodetectors and phototransistors with low-noise and high-performance, Nanotechnology, 2022, 33: 135707.
(5) Wu, Zhen; Yang, Wen-Xing*; Li, Ling; Li, Xiyun; Wang, Xin; Enhanced second-order sideband via surface plasmon polaritons in a low-Q microcavity, J. Appl. Phys., 2022, 131: 053103.
(6) Liu, Yilou; Li, Ling; Shui, Tao; Ji, Ning; Liu, Shaopeng; Yang, Wen-Xing*; Two-color second-order sideband generation via magnon Kerr nonlinearity in a cavity magnonical system, Journal of the Optical Society of America B, 2022, 39:1042.
(7) Zeng, Jinfu; Zhang, Qinlang; Liu, Xuejuan;Chen, Yan; Xu, Yiping; Jin, Yuanyuan; Xiong, Yan; Tao, Shaohua; Yang, Wen-Xing*; Chen, Shubo*; Autofocusing airy beams carrying a new kind of power-exponent-phase vortices, Optics Communications, 2022, 507: 127635.
(8) Pan, Changchang; Bu, Lili; Chen, Shihua*, Yang, Wen-Xing*; Mihalache, Dumitru; Grelu, Phhilippe; Baronio, Fabiao*; General rogue wave solutions under SU(2) transformation in the vector Chen-Lee-Liu nonlinear Schrodinger equation, Physica D, 2022, 434:133204.
(9) Li, Xiyun; Wang, Xin; Wu, Zhen; Yang, Wen-Xing*; Chen, Ai-Xi*; Tunable magnon antibunching in a hybrid ferromagnet-superconductor system with two qubits, Physical Review B, 2021, 104:224434.
(10) Zheng, Dingshan; Wang, Hailu; Chen, Ruoling; Li, Long; Guo, Jiaxiang; Gu, Yue; Zubair, Muhammad M.; Yu, Xiangxiang; Jiang, Long; Zhu, Desheng; Xiong, Yan; Zhang, Han; Yang, Wen-Xing*; Miao, Jinshui*; High-detectivity tin disulfide nanowire photodetectors with manipulation of localized ferroelectric polarization field, Nanophotonics, 2021, 10(18):4637-4644.
(11) Sun, Bo; Yu, Yingying; Zhu, Hongyu; Yang, Wen-Xing*; High Q-factor with spoof-anapole mode excitation in metamaterials, Optics Letters, 2021, 46(11):2630-2633.
(12) Sun, Bo; Yu, Yingying; Wang, Hong; Zhu, Hongyu; Yang, Wen-Xing*; Analysis of coupling effect between metamolecules in toroidal metamaterials, Journal of Physics D: Applied Physics, 2021, 54(39):0-395104.
(13) Yu, Yingying; Sun, Bo; Yang, Wen-Xing*; Anapole moment of localized plasmon polaritons based on a hybrid coupling mechanism, Optics Letters, 2020, 45:6386. (14) Sun, Bo; Yu, Yingying; Yang, Wen-Xing*; Enhanced toroidal localized spoof surface plasmons in homolateral double-split ring resonators, Optics Express, 2020, 28(11):16605-16615.
(14) Gu, Wen-Ju*; Wang, Yue-Yuan; Yi, Zhen; Yang, Wen-Xing*; Sun, Li-Hui; Force measurement in squeezed dissipative optomechanics in the presence of laser phase noise, Optics Express, 2020, 28(8):12460-12474.
(15) Tian, Yonghong; Wang, Xin; Yang, Wen-Xing*; Shui, Tao; Li, Ling; Li, Xiyun; Wu, Zhen; High-precision three dimensional atom localization via multiphoton quantum destructive interference, Optics Express, 2020, 28(17):25308-25318.
(16) Shui, Tao; Li, Ling; Wang, Xin; Yang, Wen-Xing*; One- and two-dimensional electromagnetically induced gratings in an Er3+ - doped yttrium aluminum garnet crystal, Scientific Reports, 2020, 10(1):0-4019.
(17) Li, Ling; Yang, Wen-Xing*; Shui, Tao; Wang, Xin; Ultrasensitive Sizing Sensor for a Single Nanoparticle in a Hybrid Nonlinear Microcavity, IEEE Photonics Journal, 2020, 12(3):0-4500708.
(18) Sun, Bo; Yu, Ying-Ying; Zhang, Shun; Yang, Wen-Xing*; Propagation of toroidal localized spoof surface plasmons using conductive coupling, Optics Letters, 2019, 44(15):3861-3864.
(19) Shui, Tao; Yang, Wen-Xing*; Li, Ling; Wang, Xin; Lop-sided Raman-Nath diffraction in PT-antisymmetric atomic lattices, Optics Letters, 2019, 44(8):2089-2092.
(20) Shui, Tao; Yang, Wen-Xing*; Li, Ling; Perfectly asymmetric Raman-Nath diffraction in disordered atomic gratings, Optics Express, 2019, 27(17):24693-24704.
(21) Liu, Shaopeng; Liu, Bo*; Wang, Junfeng; Sun, Tingting; Yang, Wen-Xing*; Realization of a highly sensitive mass sensor in a quadratically coupled optomechanical system, Physical Review A, 2019, 99(3):0-033822.
(22) Shui, Tao; Yang, Wen-Xing*; Zhang, Qingya; Liu, Xin; Li, Ling; Squeezing-induced giant Goos-Hanchen shift and hypersensitized displacement sensor in a two-level atomic system, Physical Review A, 2019, 99(1):0-013806.
(23) Liu, Shaopeng; Liu, Bo*; Yang, Wen-Xing*; Highly sensitive mass detection based on nonlinear sum-sideband in a dispersive optomechanical system, Optics Express, 2019, 27(4):3909-3919.
(24) Yu, Yingying; Zhu, Hongyu; Sun, Bo; Yang, Wen-Xing*; Tunable toroidal Fano resonance in the multiple split-ring resonators metamaterials, Optik, 2020, 216:0-164936.
(25) Cheng, Shubo*; Xia, Tian; Liu, Mengsi; Xu, Yiping; Xu, Shan; Gao, Shufang; Zhang, Geng; Tao, Shaohua; Yang, Wen-Xing*; Ring-broken optical vortices with an adjustable opening, Results in Physics, 2019, 15:0-102689.
(26) Zhang, Qingya; Chen, Ai-Xi; Zhang, Yuexin; Li, Ling; Yang, Wen-Xing*; Enhanced Kerr nonlinearity with a single quantum dot coupled to a gain cavity under weak-excitation limitation, Laser Physics Letters, 2019, 16(2):0-025204.
(27) Yu, Yingying; Sun, Bo; Yang, Wen-Xing*; Fano resonance in partially complementary split ring resonators arranged in circular columns, Laser Physics, 2020, 30(2):0-025402.
(28) Wang, Xin; Shui, Tao; Li, Ling; Li, Xiyun; Wu, Zhen; Yang, Wen-Xing*; Tunable single-photon diode and circulator via chiral waveguide-emitter couplings, Laser Physics Letters, 2020, 17(6):0-065201.
(29) Zhang, Wei-Bin*; Xiao, Xun; Wu, Qing-Feng; Fan, Qiang; Chen, Shanjun; Yang, Wen-Xing*; Zhang, Fu-Chun; Facile synthesis of novel Mn-doped Bi4O5Br2 for enhanced photocatalytic NO removal activity, Journal of Alloys and Compounds, 2020, 826:0-154204.
(30) Sun, Bo; Yu, Yingying; Zhu, Hongyu; Zhang, Shun; Yang, Wen-Xing*; Conductive coupling for efficient generation of multiple Fano resonances in multiple two-split-ring-resonators and its application in refractive index sensor, Optics Communications, 2020, 460:0-125091.
(31) Gao, Shufang*; Chen, Tongzhen; Hu, Mingyuan; Xu, Shan; Xiong, Yan; Cheng, Shubo; Zhang, Weibin; Wang, Yeqing; Yang, Wen-Xing*; Effects of Er3+concentration on the optical properties of Er3+:SrGdGa3O7single crystals, Optical Materials, 2019, 98:0-109502.
(32) Meng, Chun; Shui, Tao; Yang, Wen-Xing*; Tian, Yong-Hong; Control of an electromagnetically induced grating by Er3+ion concentration in an Er3+-doped YAG crystal, Journal of the Optical Society of America B-Optical Physics, 2021, 38(6):2036-2042.
代表性论文(2019年前选录):
(1) Liu, SP,Yang, Wen-Xing(*),Zhu, ZH, Shui, T, Li, L,Quadrature squeezing of a higher-order sideband spectrum in cavity optomechanics,Optics Letters,2018,43:9。
(2) Shui, T, Yang, Wen-Xing*, Liu, SP, Li, L, Zhu, ZH, Asymmetric diffraction by atomic gratings with optical PT symmetry in the Raman-Nath regime, Physical Review A 2018, 97: 033819。
(3) Li, L,Yang, Wen-Xing(*),Zhang YX, Shui, T, Chen, AX, Jiang, ZM,Enhanced generation of charge-dependent second-order sideband and high-sensitivity charge sensors in a gain-cavity-assisted optomechanical system,Physical Review A,2018,98:063840。
(4) Liu, SP,Yang, Wen-Xing(*),Shui, T, Zhu, ZH, Chen AX,Tunable two-phonon higher-order sideband amplification in a quadratically coupled optomechanical system,Scientific Reports,2017,7:17637。
(5) Yang, Wen-Xing, Chen, Ai-Xi, Xie, Xiao-Tao, Ni, Linyu, Enhanced generation of higher-order sidebands in a single-quantum-dot-cavity system coupled to a PT-symmetric double cavity, Physical Review A 2017, 96: 013802。
(6) Yang, Wen-Xing, Chen, Ai-Xi, Xie, Xiao-Tao, Liu, Shaopeng, Liu, Shasha, Dynamics control of coherent pulses via destructive interference in graphene under Landau quantization, Scientific Reports 2017, 7: 2513。
(7) Yang, Wen-Xing, Xie, Xiao-Tao, Chen, Ai-Xi, Huang, Zi-Wen, Coherent control of high-order-harmonic generation via tunable plasmonic bichromatic near fields in a metal nanoparticle, Physical Review A 2016, 93: 053806。
(8) Yang, Wen-Xing,High-order harmonics in a quantum dot and metallic nanorod complex,Optics Letters,2015,40:4903。
(9) Yang, Wen-Xing,Liu, S,Zhu, Z,Ziauddin,Lee, RK,Tunneling-induced giant Goos-Hanchen shift in quantum wells,Optics Letters,2015,40:3133。
(10) Yang, Wen-Xing,Lin, Y,Lee, T,Lee, R,Kivshar, Yuri S.,Nonlinear localized modes in bandgap microcavities,Optics Letters,2010,35:3207。
(11) Yang, Wen-Xing,Chen, Ai-Xi,Lee, Ray-Kuang,Wu, Ying,Matched slow optical soliton pairs via biexciton coherence in semiconductor quantum dot,Physical Review A,2011,84:013835。
(12) Yang, Wen-Xing,Chen, AX,Si, LG,Jiang, KJ,Yang, XX,Lee, RK,Three coupled ultraslow temporal solitons in a five-level tripod atomic system,Physical Review A,2010,81:023814。
(13) Yang, Wen-Xing,Hou, J,Lee, R,Detuning management of optical solitons in coupled quantum wells,Physical Review A,2009,79:033825。
(14) Yang, Wen-Xing,Hou, J,Lee, R,Ultraslow bright and dark solitons in semiconductor quantum wells,Physical Review A,2008,77:033838。
(15) Yang, Wen-Xing,Lee, R,Ultrafast optical switching in quantum dot-metallic nanoparticle hybrid systems,Optics Express,2015,23:13032。
(16) Yang, Wen-Xing,Yang, X,Lee, R,Carrier-envelope-phase dependent coherence in double quantum wells,Optics Express,2009,17:15402。
(17) Yang, Wen-Xing,Controllable entanglement and polarization phase gate in coupled quantum-well structure,Optics Express,2008,16:17161。
(18) Yang, Wen-Xing,Zhan, Zhiming,Li, J,Efficient scheme for multipartite entanglement and quantum information processing with trapped ions,Physical Review A,2005,72:062108。
(19) Yang, Wen-Xing,Gong, X,Li, J,Jin, L,Efficient scheme for mesoscopic superpositions of motional coherent and squeezed coherent states of N trapped ions,Physical Review A,2004,70:033812。
(20) Liu, SP,Yang, Wen-Xing(*),Chuang, Y,Chen, Ai-Xi,Liu, A,Huang, Y,Lee, RK,Enhanced four-wave mixing efficiency in four-subband semiconductor quantum wells via Fano-type interference,Optics Express,2014,22:29179。
(21) Zhu, Zhonghu, Yang, Wen-Xing*, Xie, Xiao-Tao, Three-dimensional atom localization from spatial interference in a double two-level atomic system, Physical Review A 2016, 94: 013826。
(22) Liu, Shaopeng, Yang, Wen-Xing*, Zhu, Zhonghu, Effective hyper-Raman scattering via inhibiting electromagnetically induced transparency in monolayer graphene under an external magnetic field, Optics Letters 2016, 41: 2891。
(23) Si, L,Yang, Wen-Xing(*),Yang, XX,Slow vector optical solitons in a cold five-level hyper V-type atomic system,Optics Express,2009,17:7771。
(24) Si, Liu-Gang,Yang, Wen-Xing(*),Lue, Xin-You,Hao, Xiangying,Yang, Xiaoxue,Formation and propagation of ultraslow three-wave-vector optical solitons in a cold seven-level triple-Lambda atomic system under Raman excitation,Physical Review A,2010,82:013836。
(25) Hou, Jing-Min,Yang, Wen-Xing(*),Liu, Xiong-Jun,Massless Dirac fermions in a square optical lattice,Physical Review A,2009,79:043621。
(26) Su, Younan,Lin, Chun-Yan,Hong, Ray-Ching,Yang, Wen-Xing,Jeng, Chien-Chung,Lu, Tien-Chang,Lee, Ray-Kuang(*),Lasing on surface states in vertical-cavity surface-emission lasers,Optics Letters,2014,39:5582。
(27) Sedov, ES(*),Alodjants, AP,Arakelian, SM,Chuang, Y,Lin, YY,Yang, Wen-Xing,Lee, RK,Tunneling-assisted optical information storage with lattice polariton solitons in cavity-QED arrays,Physical Review A,2014,89:033828。
(28) Xie, Xiao-Tao(*),Li, Wei-Bin,Li, Jia-Hua,Yang, Wen-Xing,Yuan, Aan-Ming,Yang, Xiaoxue,Transverse acoustic wave in molecular magnets via electromagnetically induced transparency,Physical Review B,2007,75:184423。
(29) Lue, X,Yang, Wen-Xing,Yang, X,Entanglement via atomic coherence induced by two strong classical fields,Physical Review A,2009,80:032305。
(30) Yang, Wen-Xing,Lee, RK,Slow optical solitons via intersubband transitions in a semiconductor quantum well,EPL,2008,83:14002。
(31) Yang, Wen-Xing,Ma, W,Yang, L,Zhang, G,Lee, RK,Phase control of group velocity via Fano-type interference in a triple semiconductor quantum well,Optics Communications,2014,324:221。
(32) Yang, Wen-Xing,Chen, Ai-Xi,Guo, H,Bai, Y,Lee, RK,Carrier-envelope phase control electron transport in an asymmetric double quantum dot irradiated by a few-cycle pulse,Optics Communications,2014,328:96。
(33) Yang, Wen-Xing,Chen, AX,Bai, Y,Lee, RK,Ultrafast single electron transfer in coupled quantum dots driven by a few-cycle chirped pulse,Journal of Applied Physics,2014,115:143105。
(34) Yang, Wen-Xing,Lu, JW,Zhou, ZK,Yang, Long,Lee, RK,Phase control of light propagation via Fano interference in asymmetric double quantum well,Journal of Applied Physics,2014,115:203104。
(35) Yang, Wen-Xing,Zha, TingTing,Lee, RK,Giant Kerr nonlinearities and slow optical solitons in coupled double quantum-well nanostructure,Physics Letters A,2009,374:355。
(36) Yang, Wen-Xing,Chen, Ai-Xi,Zha, T,Lee, RK,Probe absorptions in an asymmetric double quantum well,Journal of Physics B: Atomic, Molecular and Optical Physics,2009,42:225501。
(37) Yang, Wen-Xing,Gong, ZheXuan,Practical scheme for quantum dense coding between three parties using microwave radiation in trapped ions,Journal of Physics B: Atomic, Molecular and Optical Physics,2007,40:1245。
(38) Yang, Wen-Xing,Gong, ZheXuan,Li, WeiBin,Yang, Xiaoxue,Simple scheme for implementing the Deutsch-Jozsa algorithm in thermal cavity,Journal of Physics A-Mathematical and Theoretical,2007,40:155。
(39) Huang, ZW ,Chen, Ai-Xi,Zhang, Z,Yang, Wen-Xing(*),Generation of ultrashort extreme-ultraviolet pulses by enhanced plasmonic near-fields in metallic nanoparticles,EPL,2015,111:24005。
(40) Zhang QY,Chen, Ai-Xi,Zhang, YX,Yang, Wen-Xing(*),Enhanced Kerr nonlinearity with a single quantum dot coupled to a gain cavity under weak-excitation limitation,Laser Physics Letters,2019,16:025204。
(41) Zhu, Zhonghu, Chen, Ai-Xi, Liu, Shaopeng, Yang, Wen-Xing*, High-precision three-dimensional atom localization via three-wave mixing in V-type three-level atoms, Physics Letters A 2016, 380: 3956。
(42) Chen, H, Yang, Wen-Xing*, Li, X, Quantify Glucose Level in Freshly Diabetic's Blood by Terahertz Time-Domain Spectroscopy, Journal of Infrared Millimeter and Terahertz Waves 2018, 39: 399。
(43) Liu, Shaopeng, Yang, Wen-Xing*, Zhu, Zhonghu, Coherent control of the Goos-Hanchen shift via Fano interference, Journal of Applied Physics 2016, 119: 143101。
(44) Liu, Shaopeng, Yang, Wen-Xing*, Effective terahertz signal detection via electromagnetically induced transparency in graphene, Journal of the Optical Society of America B-Optical Physics 2016, 33: 279。
(45) Liu, SP, Yang, Wen-Xing(*),Zhu, ZH,Lee, RK,Giant enhanced four-wave mixing efficiency via two-photon resonance in asymmetric quantum wells,Laser Physics Letters,2015,12:095202。
(46) Zhu, ZH ,Yang, Wen-Xing(*),Chen, AiXi,Liu, SP,Lee, RK,Two-dimensional atom localization via phase-sensitive absorption-gain spectra in five level hyper inverted Y atomic systems,Journal of the Optical Society of America B-Optical Physics,2015,32:1070。
(47) Zhu, ZH,Chen, Ai-Xi,Yang, Wen-Xing(*),Lee, RK,Phase knob for switching steady-state behaviors from bistability to multistability via spontaneously generated coherence,Journal of the Optical Society of America B-Optical Physics,2014,31:2061。
(48) Wang, Z,Chen, AX,Bai, Y,Yang, Wen-Xing(*),Coherent control of optical bistability in an open Lambda-type three-level atomic system,Journal of the Optical Society of America B-Optical Physics,2012,29:2891。
(49) Si, LG,Yang, Wen-Xing(*),Yang, XX,Ultraslow temporal vector optical solitons in a cold four-level tripod atomic system,Journal of the Optical Society of America B-Optical Physics,2009,26:478。
(50) Si, L,Yang, Wen-Xing(*),Lue, XY,Li, J,Yang, XX,Slow vector optical solitons in a cold four-level inverted-Y atomic system,European Physical Journal D,2009,55:161。
(51) Hou, J,Yang, Wen-Xing(*),Next-nearest-neighbor-tunneling-induced symmetry breaking of Hofstadter's butterfly spectrum for ultracold atoms on the honeycomb lattice,Physics Letters A,2009,373:2774。
(52) Hao, X,Yang, Wen-Xing(*),Yang, X,Polarization qubit phase gate in a coupled quantum-well nanostructure,Physics Letters A,2008,372:7081。
(53) Bai, Y(*),Yang, Wenxing(*),Controllable nonlinearity with vanishing absorption in four-level atoms,Optics Communications,2010,283:5062。
(54) Bai, Y,Yang, Wenxing(*),Noise properties in a two-arm microscope imaging system with classical thermal light,Applied Optics,2010,49:4554。
(55) Li, Wei-Bin(*),Yang, Wen-Xing,Xie, Xiao-Tao,Li, Jia-Hua,Yang, Xiaoxue,Avoided level-crossing, correlation and entanglement of two-component Bose-Einstein condensates in a double well,Journal of Physics B: Atomic, Molecular and Optical Physics,2006,39:3097。
(56) Xie, XT(*),Li, W,Yang, Wen-Xing,Slow bistable solitons in a cold three-state medium,Journal of Physics B: Atomic, Molecular and Optical Physics,2006,39:401。
(57) Chen, Hua ,Ma, Shi-Hua,Wu, Xiu-Mei,Yang, Wen-Xing, Zhao, Tian,Diagnose human colonic tissues by terahertz near-field imaging,Journal of Biomedical Optics,2015,20:036017。
(58) Zhu, Zhonghu, Yang, Wen-Xing*, Chen, Ai-Xi, Dressed-state analysis of efficient three-dimensional atom localization in a ladder-type three-level atomic system, Laser Physics 2016, 26: 075203。
(59) Shui, T, Yang, Wen-Xing*, Chen, Ai-Xi, Liu, SP, Li, L, Zhu, ZH, High-precision two-dimensional atom localization from four-wave mixing in a double-Lambda four-level atomic system, Laser Physics 2018, 28: 035201。
(60) Liu, Shasha, Liu Shaopeng, Zhu, Zhonghu, Yang, Wen-Xing*, Laser Physics 2016, 26: 035401。
(61) Yang, Wen-Xing,Hou, J,Lee, RK,Highly efficient four-wave mixing via intersubband transitions in InGaAs/AlAs coupled double quantum well structures,Journal of Modern Optics,2009,56:716。
(62) Zhu, ZH(*),Chen, Ai-Xi,Bai, Y,Yang, Wen-Xing(*),Lee, RK,Controllable optical steady behavior from nonradiative coherence in GaAs quantum well driven by a single elliptically polarized field,Modern Physics Letters B,2014,28:1450117。
(63) Yang, Wen-Xing,Chen, Ai-Xi,Zha, TT,Bai, Y,Lee, RK,Interference-induced enhancement of field entanglement in a microwave-driven V-type single-atom laser,Central European Journal of Physics,2014,12:737。
(64) Yang, Wen-Xing,Chen, AX,Bai,Y,Lee,RK,Phase control of optical steady-state behaviors from Fano-type interference in triple semiconductor quantum wells,Optik,2015,126:2003。
(65) Bai, Y(*),Yang, Wen-Xing,Han, D,The visibility analysis of correlated imaging based on the coherent mode representation,Optik,2014,125:3825。
(66) Bai, Y(*),Yang, Wen-Xing,Yu, X,Han, S,Ghost diffraction, lensless system and 2-f system,Optik,2011,122:451。
(67) Bai, Y(*),Yang, K,Yang, Wen-Xing,Yu, X,Noise analysis in correlated imaging, quantum and classical,Optik,2011,122:1791。
联系方式:
地址:湖北省荆州市长江大学物理与光电工程学院 434023
电话:0716-8060967
Email:wenxingyang2 AT 126.com