武中文
[发布单位:beat365英国官网 来源:beat365英国官网 发布时间:2017-11-28]
欢迎报考本课题组硕士、博士研究生
基本情况
姓 名:武中文
性 别:男
出生年月:1987年09月
党 派:九三学社
职 称:教授/博导
研究方向:原子结构与光谱、原子碰撞动力学过程、光与物质相互作用、X射线特征光子及Auger电子角向关联和极化特性、原子跃迁的密度矩阵理论
招生专业:原子与分子物理
工作单位:beat365英国官网
通讯地址:甘肃省兰州市安宁区安宁东路967号,beat365英国官网95号信箱,730070
电子邮箱:zhongwen.wu@nwnu.edu.cn
教育背景
2014.01—2017.05 德国耶拿大学 自然科学博士(亥姆霍兹学会博士研究生全额奖学金资助)
2009.09—2012.06 beat365英国官网 理学硕士(免试推荐攻读原子与分子物理专业硕士研究生)
2005.09—2009.06 beat365英国官网 理学学士
工作经历
2024.12—至今 beat365英国官网 教授
2023.01—2024.12 beat365英国官网 云亭青年教授
2022.01—2024.02 德国耶拿亥姆霍兹研究所 博士后
2019.06—2022.12 beat365英国官网 副教授 / 博导(2022.03)
2017.06—2019.05 beat365英国官网 讲师 / 硕导(2019.03)
2013.08—2013.12 德国耶拿亥姆霍兹研究所 访问学者
2013.05—2013.07 德国重离子研究中心 访问学者
2012.06—2013.04 甘肃省原子分子物理与功能材料重点实验室 研究助理
个人荣誉
入选甘肃省第二批“陇原青年英才”人才计划, 中共甘肃省委人才工作领导小组,2023.11
入选甘肃省“杰出青年基金”人才项目(23JRRA687),甘肃省科学技术厅,2023.06
指导研究生获2021—2022学年“甘肃省优秀硕士学位论文”,甘肃省学位委员会,2022.12
获得2021年度“甘肃省自然科学奖(二等)”(2021-Z2-004-R3),甘肃人民政府,2022.06
入选甘肃省“陇原青年创新创业人才工程”(2021LQGR64),中共甘肃省委组织部,2021.04
入选beat365英国官网第四届“青年教师教学科研之星”资助计划,beat365英国官网,2021.01
获得九三学社甘肃省委员会“优秀社员”荣誉称号,九三学社甘肃省委员会,2020.12
入选甘肃省“青年科技人才托举工程”(GXH2020626-09),甘肃省科学技术协会,2020.10
第五届全国原子分子光物理学术研讨会“优秀青年报告奖”,组委会,中国·济南,2020.10
第四届全国原子分子光物理学术研讨会“优秀青年报告奖”,组委会,中国·绵阳,2019.05
2016年度“国家优秀自费职工奖”(全球共500名,德国共34名),国家留学基金委员会
研究成果[Z.W.Wu (武中文) et al., Phys. Rev. A 90, 052515 (2014)]获选编辑推荐亮点论文
2013年度“德国亥姆霍兹学会博士研究生全额奖学金”,德国耶拿大学,2013.08–2017.05
教学工作
本科生教学:量子力学、高等数学(主持2019年教学改革双语教学示范课程建设项目)、物理学前沿讲座
研究生教学:原子结构与光谱理论、原子碰撞理论
科学研究与学术交流
基于以上研究方向,在The Astrophysical Journal Supplement Series, The Astrophysical Journal, Physical Review A, New Journal of Physics和Optics Express等SCI期刊发表论文80余篇(代表性论文如下),在国际国内学术会议上作口头报告20余次。此外,承担Physical Review Letters, Physical Review A, Computer Physics Communications, European Physical Journal D, Nuclear Instruments & Methods in Physics Research Section B, Journal of Electron Spectroscopy and Related Phenomena, Atoms, 《原子核物理评论》和《核技术》等国际国内学术期刊的同行评审工作。长期以来,与德国耶拿亥姆霍兹研究所/耶拿弗里德里希席勒大学的Stephan Fritzsche教授和Thomas Stöhlker教授、德国联邦物理技术研究院/布伦瑞克工业大学的Andrey Surzhykov教授和Anton Peshkov博士、俄罗斯圣光机大学的Andrey Volotka教授、俄罗斯莫斯科国立大学的Nikolai Kabachnik教授和Alexei Grum-Grzhimailo教授、瑞典斯德哥尔摩大学的Reinhold Schuch院士等人以及中国科学院近代物理研究所、北京应用物理与计算数学研究所、复旦大学、四川大学和南京航空航天大学等科研院所的相关研究小组或个人保持着密切的学术交流与合作。
科研项目方面,主持在研国家自然科学基金面上项目(批准号:12174315; 12574281)和甘肃省杰出青年基金项目(批准号:23JRRA687)。主持完成国家自然科学基金青年项目(批准号:11804280)、国家公派出国留学博士后面上项目(批准号:202008620004)、甘肃省青年科技人才托举工程项目(批准号:GXH2020626-09)、甘肃省陇原青年创新创业人才项目(批准号:2021LQGR64)、甘肃省高等学校科研项目一般项目(批准号:2018A-002)和beat365英国官网青年教师科研能力提升计划重点项目(批准号:NWNU-LKQN2019-5)各1项。
代表性论文(Z.W.Wu标注本人,*标注通讯作者,#标注共同第一作者)
Y. Li, J. Q. Wang, Z. Q. Tian, Y. Yang, and Z.W.Wu*, “Spin polarization of Auger electrons following inner-shell photoionization of highly charged boronlike ions by circularly polarized light”, Phys. Rev. A 112, 023113 (2025).
Z.W.Wu* and Y. Z. Wang, “Spin polarization effect on linear polarization of photon emission following resonant electron capture of lithiumlike ions”, Phys. Rev. A 110, 052803 (2024).
Z.W.Wu*, Y. Li, and S. Fritzsche, “Competition of the Breit interaction in angular anisotropy of Auger electrons”, Phys. Rev. A 109, 032817 (2024).
Z.W.Wu*, W. Liu, and S. Fritzsche, “Angular and polarization properties of characteristic x-ray radiation following inner-shell 2p3/2 photoionization of high-Z atoms”, Phys. Rev. A 108, 053115 (2023).
Z.W.Wu*, Z. Q. Tian, C. Z. Dong, A. Surzhykov, and S. Fritzsche, “Hyperfine-induced effects on Kα1 linear polarization following EIE of heliumlike Tl79+ ions with nuclear spin I=1/2”, New J. Phys. 25, 093039 (2023).
Z.W.Wu*, Z. M. He, Z. Q. Tian, C. Z. Dong, and S. Fritzsche, “Angular and polarization properties of the Lyman-α1 line 2p3/2→1s1/2 following electron-impact excitation of hydrogenlike ions”, Phys. Rev. A 105, 062813 (2022).
Z.W.Wu*, Y. Li, Z. Q. Tian, and C. Z. Dong, “Effect of the Breit interaction on the angular distribution of Auger electrons following electron-impact excitation of highly charged Be-like ions”, Phys. Rev. A 105, 032809 (2022).
Z.W.Wu*, Z. Q. Tian, and C. Z. Dong, “Revisiting the emission behavior of the characteristic line 1s2p 1P1→ 1s2 1S0 following electron-impact excitation of heliumlike ions”, Phys. Rev. A 105, 012815 (2022).
Z.W.Wu*, Z. Q. Tian, J. Jiang, C. Z. Dong, and S. Fritzsche, “Hyperfine-induced effects on the Kα1 angular distribution following EIE of heliumlike spin-1/2 Tl79+ ions”, Phys. Rev. A 104, 062814 (2021).
Z.W.Wu*, Z. Q. Tian, Y. H. An, and C. Z. Dong, “Angular distribution and polarization of the 3C and 3D lines following electron-impact excitation of Fe16+ ions”, Astrophys. J. 910, 142 (2021).
Z.W.Wu*, Z. Q. Tian, J. Jiang, C. Z. Dong, and S. Fritzsche, “Hyperfine-induced effects on angular emission of the magnetic-quadrupole line 1s2p3/2 3P2→1s2 1S0 following electron-impact excitation of Tl79+ ions”, Phys. Rev. A 102, 042813 (2020).
Z.W.Wu*, M. M. Zhao, C. Ren, C. Z. Dong, and J. Jiang, “Effect of the Breit interaction on inner-shell EIE and subsequent radiative decay of highly charged berylliumlike ions”, Phys. Rev. A 101, 022701 (2020).
D. H. Zhang, Z.W.Wu*, C. Ren, J. Jiang, L. Y. Xie, R. Schuch, J. M. Zhang, and C. Z. Dong, “Calculations of DR and EIE rate coefficients of highly charged sulfur ions”, Astrophys. J. Suppl. Ser. 247, 22 (2020).
C. Ren, Z.W.Wu*#, J. Jiang, L. Y. Xie, D. H. Zhang, and C. Z. Dong, “Influence of the Breit interaction on linear polarization of radiation lines following electron-impact excitation of the boron isoelectronic sequence”, Phys. Rev. A 98, 012711 (2018).
Z.W.Wu*, A. V. Volotka, A. Surzhykov, and S. Fritzsche, “Angle-resolved x-ray spectroscopic scheme to determine overlapping hyperfine splitting in highly charged heliumlike ions”, Phys. Rev. A 96, 012503 (2017).
Z.W.Wu*, A. V. Volotka, A. Surzhykov, C. Z. Dong, and S. Fritzsche, “Level sequence and splitting identification of closely spaced energy levels by angle-resolved analysis of fluorescence light”, Phys. Rev. A 93, 063413 (2016).
Z.W.Wu*, A. Surzhykov, and S. Fritzsche, “Reply to Comment on Hyperfine-induced modifications to the angular distribution of the Kα1 x-ray emission”, Phys. Rev. A 91, 056502 (2015).
Z.W.Wu*, N. M. Kabachnik, A. Surzhykov, C. Z. Dong, and S. Fritzsche, “Determination of small level splittings in highly charged ions via angle-resolved measurements of characteristic x rays”, Phys. Rev. A 90, 052515 (2014)[Selected as an Editor’s Suggestion paper; 获选编辑推荐亮点论文].
Z.W.Wu*, A. Surzhykov, and S. Fritzsche, “Hyperfine-induced modifications to the angular distribution of the Kα1 x-ray emission”, Phys. Rev. A 89, 022513 (2014).
Z.W.Wu*, C. Z. Dong, and J. Jiang, “Degrees of polarization of the two strongest 5f→3d lines following EIE and DR processes of Cu-like to Se-like gold ions”, Phys. Rev. A 86, 022712 (2012).
Z.W.Wu*, J. Jiang, and C. Z. Dong, “Influence of Breit interaction on the polarization of radiation following inner-shell electron-impact excitation of highly charged beryllium-like ions”, Phys. Rev. A 84, 032713 (2011).
B. Yang, Z.W.Wu, D. Y. Yu, C. J. Shao, M. W. Zhang, Y. L. Xue, W. Wang, Z. Y. Song, J. L. Liu, F. F. Ruan, Y. H. Wu, and X. H. Cai, “Nonradiative double-electron capture in fast collisions of bare Xe54+ ions with Kr and Xe gaseous targets”, Phys. Rev. A 110, 022801 (2024).
S. Ramakrishna, Z.W.Wu, A. V. Maiorova, and S. Fritzsche, “Interaction of Hermite–Gaussian beams with a macroscopic atomic target”, Ann. Phys. (Berlin) 2024, 2400048 (2024).
Z. Tian, Z. Tang, Y. Li, S. Huang, Y. Yang, Z.W.Wu, J. Li, W. Li, X. Ding, and Y. Zou, “Magnetic-field-induced effect on linear polarization of the 2p53s 3P2 → 2p6 1S0 line in Ne-like ions excited by electron impact”, Phys. Rev. A 110, 062803 (2024).
Z. Yang, Z. He, G. Xiong, K. Yao, Y. Yang, B. Wei, Y. Zou, Z.W.Wu, Z. Tian, Y. Ma, C. Wu, X. Gao, and Z. Hu, “Apparent change of the 3C/3D line intensity ratio in neonlike ions”, Opt. Express 30, 25326 (2022).
Z. Y. Song, Z.W.Wu, Z. H. Yang, B. L. Zhang, and G. Q. Xiao, “Energy-loss enhancement and charge-equilibration time for highly charged xenon ions at near-Bohr velocity in solids”, Phys. Rev. A 106, 062817 (2022).
S. X. Wang, Z. K. Huang, W. Q. Wen, W. L. Ma, H. B. Wang, S. Schippers, Z.W.Wu, Y. S. Kozhedub, M. Y. Kaygorodov, A. V. Volotka, K. Wang, C. Y. Zhang, C. Y. Chen, C. Liu, H. K. Huang, L. Shao, L. J. Mao, X. M. Ma, J. Li, M. T. Tang, K. M. Yan, Y. B. Zhou, Y. J. Yuan, J. C. Yang, S. F. Zhang, X. Ma, and L. F. Zhu, “Determination of the 2s22p5—2s2p6 transition energy in F-like nickel utilizing a low-lying dielectronic resonance”, Phys. Rev. A 106, 042808 (2022).
L. Wu, J. Jiang, Z.W.Wu, Y.-J. Cheng, G. Gaigalas, and C.-Z. Dong, “Energy levels, absorption oscillator strengths, transition probabilities, polarizabilities, and g factors of Ar13+ ions”, Phys. Rev. A 106, 012810 (2022).
B. Yang, D. Yu, C. Shao, X. Cai, Z.W.Wu, L. Xie, K. N. Lyashchenko, Y. S. Kozhedub, K. Ma, Y. Xue, W. Wang, M. Zhang, J. Liu, R. Lu, Z. Song, Y. Wu, F. Ruan, Y. Zhang, C. Dong, and Z. Yang, “State-selective nonradiative electron capture in collisions of 95—197-MeV/u Xe54+ with Kr and Xe”, Phys. Rev. A 104, 032815 (2021).
Z. Yang, J. Gao, W. Yan, K. Yao, J. Yang, Z.W.Wu, and Z. Hu, “Anisotropy and polarization of x-ray line emissions in the dielectronic recombination of hydrogenlike Fe25+ ions”, Phys. Rev. A 104, 022809 (2021).
J. Jiang, Y. Ma, X. Wang, C. Z. Dong, and Z.W.Wu, “Tune-out and magic wavelengths of Ba+ ions”, Phys. Rev. A 103, 032803 (2021).
J. Jiang, X. J. Li, X. Wang, C. Z. Dong, and Z.W.Wu, “Tune-out wavelengths of the hyperfine components of the ground level of 133Cs atoms”, Phys. Rev. A 102, 042823 (2020).
J. Jiang, L. Jiang, Z.W.Wu, D. H. Zhang, L. Y. Xie, and C. Z. Dong, “Angle-dependent magic wavelengths for the 4s1/2→3d5/2, 3/2 transitions of Ca+ ions”, Phys. Rev. A 99, 032510 (2019).
T. Kämpfer, I. Uschmann, Z.W.Wu, A. Surzhykov, S. Fritzsche, E. Förster, and G. G. Paulus, “Linear polarization of the characteristic x-ray lines following inner-shell PI of tungsten”, Phys. Rev. A 93, 033409 (2016).
J. Q. Wang, Y. Li, and Z.W.Wu*, “Direct and resonant photoionization of highly charged aluminum-like Ca7+ ions”, Phys. Plasmas 32, 093301 (2025).
Y. Li, J. Q. Wang, and Z.W.Wu*, “Relativistic R-matrix studies on direct and resonant photoionization of Mg-like Si2+ ions”, J. Phys. B: At. Mol. Opt. Phys. 58, 145001 (2025).
T. Wang, J. Wang, J. Wang, Y. Li, and Z.W.Wu*, “Angular anisotropy of the Lyman-α1 line following electron-impact excitation of H-like gold ions with nuclear spin I = 3/2”, Eur. Phys. J. D 79, 77 (2025).
Y. Li, Z. Q. Tian, J. Q. Wang, C. Z. Dong, S. Fritzsche, and Z.W.Wu*, “Effect of the Breit interaction on spin polarization of Auger electrons following electron-impact excitation of Be-like ions”, Eur. Phys. J. D 79, 26 (2025).
Z.W.Wu*, J. Q. Wang, Y. Li, Y. H. An, and S. Fritzsche, “Relativistic R-matrix calculations for the photoionization of W61+ ions”, Phys. Plasmas 31, 043301 (2024).
Z.W.Wu*, W. Liu, and S. Fritzsche, “Angle-resolved linear polarization of characteristic lines following innershell 2p3/2 photoionization of atoms”, Eur. Phys. J. D 78, 69 (2024).
Z.W.Wu*, Z. Q. Tian, and S. Fritzsche, “Angular distribution of the characteristic line 1s2p 3P2→1s2 1S0 of thallium ions: hyperfine-induced multipole interference”, Eur. Phys. J. D 77, 95 (2023).
Z. Q. Tian, Z. M. Tang, Y. Li, Y. Yang, Z.W.Wu*, Y. M. Zou, “Hyperfine-induced effects on the linear polarization of the magnetic-quadrupole lines of spin-1/2 Be-like ions excited by electron impact”, J. Quant. Spectrosc. Radiat. Transf. 311, 108775 (2023).
Y. H. An, Z.W.Wu*, J. Jiang, L. Y. Xie, D. H. Zhang, and C. Z. Dong, “Relativistic R-matrix calculations of the photoionization of W63+ ions”, J. Phys. B: At. Mol. Opt. Phys. 54, 065001 (2021).
D. H. Zhang, C. Z. Dong, and Z.W.Wu*#, “Angular distribution and polarization of characteristic x-ray lines following innershell photoionization of tungsten by linearly polarized light”, J. Quant. Spectrosc. Radiat. Transf. 244, 106844 (2020).
N. J. Dalal, Z.W.Wu*, X. B. Ding, L. Y. Xie, and C. Z. Dong, “The effect of 5f states on the nd→5f transition energies and spectra of americium ions”, IOP SciNotes 1, 035201 (2020).
Z.W.Wu*, A. V. Volotka, C. Z. Dong, and S. Fritzsche, “Dielectronic recombination of highly charged ions with spin-polarized electrons”, Nucl. Instr. Meth. Phys. Res. B 408, 130 (2017).
Z.W.Wu*, Y. Z. Zhang, Y. B. Fu, A. Surzhykov, S. Fritzsche, and C. Z. Dong, “Dielectronic recombination rate coefficients of initially rubidium-like tungsten”, Eur. Phys. J. D 69, 140 (2015).
Z.W.Wu*, S. Fritzsche, and A. Surzhykov, “Nuclear magnetic dipole moment effect on the angular distribution of the Kα lines”, Phys. Scr. T166, 014029 (2015).
Z.W.Wu*, Y. B. Fu, X. Y. Ma, M. J. Li, L. Y. Xie, J. Jiang, and C. Z. Dong, “Electron impact excitation and dielectronic recombination of highly charged tungsten ions”, Atoms 3, 474 (2015) [受邀撰写].
S. Fritzsche, H. K. Huang, Z.-K. Huang, S. Schippers, W. Q. Wen, and Z.W.Wu, “Dielectronic recombination into high-n Rydberg shells”, Eur. Phys. J. D 79, 22 (2025).
W. Li, B. Li, H. Chen, L. Xie, Z.W.Wu, X. Ding, D. Zhang, J. Jiang, and C. Dong, “Fully relativistic distorted-wave method of studying electron-atom collision excitation process”, Acta Phys. Sin. 74, 033401 (2025).
S. Fritzsche, A. K. Sahoo, L. Sharma, Z.W.Wu, and S. Schippers, “Merits of atomic cascade computations”, Eur. Phys. J. D 78, 75 (2024).
Y. An, X. Shen, P. Yuan, and Z.W.Wu, “Collisional-radiative modeling of the 2p3l (l=p, d) spectra of N II and application to lightning”, J. Appl. Phys. 133, 173301 (2023).
S. Fritzsche, A. Maiorova, and Z.W.Wu, “Radiative recombination plasma rate coefficients for multiply charged ions”, Atoms 11, 50 (2023).
B. Yang, Z.W.Wu, D. Yu, C. Shao, Y. Xue, W. Wang, Z. Song, M. Zhang, J. Liu, R. Lu, Y. Wu, F. Ruan, Y. Zhang, S. Fritzsche, and X. Cai, “Nearly isotropic Lyman-α1 radiation 2p3/2→1s1/2 following nonradiative electron capture in Xe54+ + Kr collisions at 197 MeV/u”, J. Phys. B: At. Mol. Opt. Phys. 56, 055203 (2023).
Y. Guo, B. Hu, Z.W.Wu, X. Wang, Z. Song, Q. Xu, and Z. Yang, “Emission of x rays in collisions of xenon ions with metal surfaces”, Chem. Phys. 562, 111628 (2022).
H. Dong, J. Jiang, Z.W.Wu, C. Dong, and G. Gaigalas, “Calculations of atomic polarizability for beryllium using MCDHF method”, Chin. Phys. B 30, 043103 (2021).
T. Wang, L. Jiang, X. Wang, C.-Z. Dong, Z.W.Wu, and J. Jiang, “Theoretical study of polarizabilities and hyperpolarizabilities of Be+ ions and Li atoms”, Acta Phys. Sin. 70, 043101 (2021).
X. Wang, J. Jiang, Z.W.Wu, and C. Z. Dong, “Determination of oscillator strengths by using magic wavelengths of the 5s1/2→5p1/2, 3/2 transitions for Rb”, J. Quant. Spectrosc. Radiat. Transf. 242, 106783 (2020).
N. J. Dalal, Z.W.Wu, X. B. Ding, L. Y. Xie, and C. Z. Dong, “Theoretical study on K, L, and M x-ray transition energies and rates of Am and its ions Amq+(q=1-6)”, Nucl. Phys. Rev. 36, 111 (2019).
D. H. Zhang, L. Y. Xie, J. Jiang, Z.W.Wu, C. Z. Dong, Y. L. Shi, and Y. Z. Qu, “Electron-impact single ionization for W4+ and W5+”, Chin. Phys. B 27, 053402 (2018).
M. O. Herdrich, G. Weber, A. Gumberidze, Z.W.Wu, and Th. Stöhlker, “Fast calculator for x-ray emission due to RR and REC in relativistic heavy-ion atom collisions”, Nucl. Instr. Meth. Phys. Res. B 408, 294 (2017).
T. Liang, K. Ma, Z.W.Wu, D. Zhang, C. Dong, and Y. Shi, “Theoretical studies on the radiative electron capture and subsequent radiative decay in the collision of Xe53+ ions with neutral Xe”, Acta Phys. Sin. 65, 143401 (2016).
L. Y. Xie, X. Y. Ma, C. Z. Dong, Z.W.Wu, Y. L. Shi, and J. Jiang, “Polarization of the nf→3d (n = 4, 5, 6) x-rays from tungsten ions following EIE and DR processes”, J. Quant. Spectrosc. Radiat. Transf. 141, 31 (2014).
I. A. Saber, C.-Z. Dong, X.-L. Wang, W.-D. Zhou, and Z.W.Wu, “Theoretical study on K, L, and M x-ray transition energies and rates of neptunium and its ions”, Chin. Phys. B 23, 023101 (2014).
Y.-L. Shi, C.-Z. Dong, X.-Y. Ma, Z.W.Wu, L.-Y. Xie, and S. Fritzsche, “Polarization of M2 line emitted following electron-impact excitation of beryllium-like ions”, Chin. Phys. Lett. 30, 063401 (2013).
X.-Y. Ma, C.-Z. Dong, Z.W.Wu, J. Jiang, and L.-Y. Xie, “Theoretical study on electron-impact excitation processes and the relevant polarization of radiation of 2s1/2-2p3/2 in W65+ through W71+”, Acta Phys. Sin. 61, 213401 (2012).
参加学术会议与所作学术报告情况
第34届光子、电子和原子碰撞国际会议,2025.07.29–08.05,日本·札幌 (墙报报告)
第10届全国计算物理会议,2025.07.22–26,中国·烟台 (墙报报告)
原子分子物理中的精密谱及动力学过程研讨会,2025.07.18–21,中国·兰州 (会议组织)
第08届原子分子与光物理学术研讨会,2025.06.13–16,中国·喀什 (大会报告)
第09届原子分子精密谱研讨会,2025.04.18–21,中国·荆州
第13届成像技术及其在原子分子物理中的应用学术研讨会,2025.04.03–06,中国·成都 (大会报告)
第13届原子分子数据及其应用国际会议,2024.09.22–26,中国·兰州 (会议组织;墙报报告)
第08届原子分子精密谱研讨会,2024.04.19–22,中国·深圳 (墙报报告)
第44届极端原子体系国际会议,2024.02.11–16,奥地利·里茨勒恩 (大会报告)
离子储存环相关的核天体物理英德研讨会,2024.01.29–02.02,德国·巴特洪内夫 (墙报报告)
2024年度德国重离子研究中心ErUM-FSP APPA会议,2024.01.18–19,德国·达姆施塔特 (墙报报告)
2023年度原子物理国际研讨会,2023.11.27–12.01,德国·德累斯顿 (墙报报告)
等离子体研究及其应用国际会议,2023.09.18–22,波兰·华沙 (墙报报告)
第14届天体和实验室等离子体光谱和振子强度国际研讨会,2023.07.10–14,法国·巴黎 (墙报报告)
第86届德国物理学会春季会议,2023.03.05–10,德国·汉诺威 (分会报告;分会主持)
第43届极端原子体系国际会议,2023.02.12–17,奥地利·里茨勒恩 (大会报告)
2022年度原子物理国际研讨会,2022.11.28–12.02,德国·德累斯顿 (墙报报告)
第12届原子分子数据及其应用国际会议,2022.09.25–29,意大利·莫拉迪巴里 (大会报告)
第11届物理学新前沿国际会议,2022.08.30–09.12,希腊·克里特岛 (分会报告;分会主持)
HITRAP设施和实验:现状与未来,2022.07.17–20,德国·爱森纳赫 (墙报报告)
重离子储存环新前沿:从原子碰撞到多体系统,2022.06.20–24,德国·巴特洪内夫 (墙报报告)
第21届全国原子与分子物理学术会议,2021.09.24–27,中国·大连 (墙报报告)
第05届原子分子光物理学术研讨会,2020.10.16–18,中国·济南 (分会报告)
第06届原子分子精密谱研讨会,2019.10.17–21,中国·新乡 (墙报报告)
第20届全国原子与分子物理学术会议,2019.08.16–20,中国·洛阳 (分会报告)
第20届原子分子碰撞过程中的关联、极化和电离国际研讨会,2019.07.31–08.03,法国·梅茨
第31届光子、电子和原子碰撞国际会议,2019.07.23–30,法国·多维尔 (墙报报告)
第13届天体和实验室等离子体光谱和振子强度国际研讨会,2019.06.23–27,中国·上海 (墙报报告)
第04届原子分子光物理学术研讨会,2019.05.17–19,中国·绵阳 (大会报告)
第08届全国原子分子光物理青年科学家论坛,2018.10.19–21,中国·北京 (大会报告)
第05届原子分子精密谱会议,2018.10.11–15,中国·兰州 (会议组织;大会报告)
低能高电荷态离子精密测量中德研讨会,2018.08.12–16,中国·兰州 (大会报告)
第19届全国原子与分子物理学术会议,2017.08.07–09,中国·长春 (分会报告)
超重原子和离子的原子过程HIJ-EMMI研讨会,2016.10.26,德国·耶拿
第25届留德中国物理学者学会年会,2016.10.01–02,德国·亚琛 (大会报告)
第18届高电荷态离子物理国际会议,2016.09.11–16,波兰·凯尔采 (墙报报告)
第80届德国物理学会春季会议,2016.02.29–03.04,德国·汉诺威 (分会报告)
第37届极端原子体系国际会议,2016.02.15–18,奥地利·里茨勒恩 (大会报告)
第12届储存离子及原子物理国际合作会议,2015.09.23–26,希腊·克里特岛 (大会报告)
第03届强场短波长原子分子过程国际研讨会,2015.07.18–20,德国·汉堡 (墙报报告)
第79届德国物理学会春季会议,2015.03.23–27,德国·海德堡 (分会报告)
第36届极端原子体系国际会议,2015.02.15–18,奥地利·里茨勒恩 (大会报告)
第11届储存离子及原子物理国际合作会议,2014.10.16–17,德国·沃尔姆斯
2014年度欧洲FAIR科学与技术国际会议,2014.10.13–17,德国·沃尔姆斯 (分会报告)
第03届国际原子能机构钨离子光谱和碰撞国际会议,2014.10.06–08,奥地利·维也纳 (大会报告)
第09届原子分子数据及其应用国际会议,2014.09.21–25,德国·耶拿 (大会报告)
第06届原子体系中的基本过程国际研讨会,2014.07.09–12,斯洛伐克·布拉迪斯拉发 (墙报报告)
第78届德国物理学会春季会议,2014.03.17–21,德国·柏林 (墙报报告)
第03届稀有气体XUV光电离现象德国-俄罗斯联合研讨会,2013.12.05–06,德国·汉堡
第10届储存离子及原子物理国际合作会议,2013.10.28–31,德国·耶拿
强电磁场中的量子电动力学HIJ-EMMI研讨会,2013.07.02,德国·耶拿
第16届全国原子与分子物理学术会议,2011.08.09–14,中国·吉安 (墙报报告)
在读研究生
王菊强(2025级博士)、李鹏鸿(2025级硕士)、任鹏达(2025级硕士)
毕薇桐(2024级硕士)、张艳艳(2024级硕士)、何汇春(2024级硕士)
李 艺(2023级博士)、史海霞(2023级硕士)、王 迪(2023级硕士)、王继强(2023级硕士)
小组合影(2023.05.26)
(左起:武中文、王艳珍、王婷玉、王菊强、贺泽敏、李艺、刘伟)
已毕业研究生
王婷玉(2025届硕士):获beat365英国官网硕士研究生学业二等奖学金
王艳珍(2025届硕士):获beat365英国官网研究生“学术之星”称号、硕士研究生学业二等奖学金
王菊强(2025届硕士):获硕士研究生国家奖学金、学术科研奖,beat365英国官网博士研究生硕博连读
刘 伟(2024届硕士):获beat365英国官网研究生“学术之星”称号、硕士研究生学业二等奖学金
贺泽敏(2023届硕士):获硕士研究生国家奖学金、学术科研奖、硕士研究生学业二等奖学金
李 艺(2023届硕士):获硕士研究生学术科研奖、学业一等奖学金,考取beat365英国官网博士研究生
田自强(2022届硕士):获甘肃省优秀硕士学位论文、硕士研究生国家奖学金,考取复旦大学博士研究生
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