个人简介
学习经历: 2006/09-2010/09,斯德哥尔摩大学,物理系原子物理部,博士 2002/09-2006/06,兰州大学,核科学与技术学院,博士 1998/09-2002/06,兰州大学,物理科学与技术学院,学士 工作及研究经历: 2014/05-现在,兰州大学,核科学与技术学院,教授 2016/10-2017/01,法国CIMAP实验室访问教授 2015/9-2015/12, 法国CIMAP实验室访问教授 2014/12-2015/03,法国CIMAP实验室访问教授 2011/03-2014/05,兰州大学,核科学与技术学院,副教授 2010/09-2011/01,斯德哥尔摩大学,物理系原子物理部,项目研究助理
研究领域
目前基于核学院离子束、电子束与微结构相互作用的实验平台,以及其他合作实验平台,例如,近代物理研究所的高电荷态离子源平台等,从事离子束物理相关研究:带电粒子束与微结构相互作用; 重离子谱学与QED效应;离子束检测和辐照效应研究。
近期论文
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[1] H.Q. Zhang*, N. Akram,C. Trautmann,R. Schuch Transmission profiles of ions through nano-capillaries of rectangular cross-section in mica Nucl. Instr. and Meth. B, 406 421–424 (2017) [2] E. Giglio, S. Guillous, A. Cassimi, H. Q. Zhang, G. U. L. Nagy, and K. Tokesi Evolution of the electric potential of an insulator under charged particle impact Phys. Rev. A 95, 030702(R) (2017) [3] H. Q. Zhang*, N. Akram, and R. Schuch Guiding and scattering of ions in transmission through mica nanocapillaries Phys. Rev. A 94, 032704 (2016) [4] Z. Y. Song, Z. H. Yang , H. Q. Zhang, J. X. Shao, Y. Cui, Y. P. Zhang, X. A. Zhang, Y. T. Zhao, X. M. Chen, and G. Q. Xiao Rydberg-to-M-shell x-ray emission of hollow Xeq+ (q=27–30)atoms or ions above metallic surfaces Phys. Rev. A 91, 042707 (2015) [5] P. Zhou, HQ. Zhang*, Q. Zhang, Z. Liu, S. Guan, G. Wang, C. Zhou, J. Jia, X. Lv, J. Shao, Y. Cui, L. Chen, X. Chen The nanostructure formation on muscovite mica surface induced by intermediate-energy ions Nucl. Instr. and Meth. B 307 221–224 (2013) [6] HQ. Zhang, N. Akram, I. L. Soroka, C. Trautmann and R. Schuch* Transmission of highly charged ions through mica nanocapillaries of rhombic cross section Phys. Rev. A 86, 022901-022908 (2012) [7] H.-Q. Zhang, N. Akram, P. Skog, I. L. Soroka, C. Trautmann and R. Schuch* Tailoring of keV-Ion Beams by Image Charge when Transmitting through Rhombic and Rectangular Shaped Nanocapillaries Phys. Rev. Lett. 108, 193202-193206 (2012) [8] Lin Chen, Yanling Guo, Juanjuan Jia, Hongqiang Zhang, Ying Cui, Jianxiong Shao, Yongzhi Yin, Xiyu Qiu, Xueyang Lv, Guangzhi Sun, Jun Wang, Yifeng Chen, Fayuan Xi, and Ximeng Chen* Absence of a guiding effect and charge transfer in the interaction of keV-energy negative ions with Al2O3 nanocapillaries Phys. Rev. A 84, 032901-032907 (2011) [9] R. Schuch, S. Tashenov, I. Orban, M. Hobein, S. Mahmood, O. Kamalou, N. Akram, A. Safdar, P. Skog, A. Solders and H. Zhang The new Stockholm Electron Beam Ion Trap (S-EBIT) Journal of Instrumentation 5 C12018 (2010) [10] Dynamics of guiding highly charged ions through SiO2 nanocapillaries H.-Q. Zhang*, P. Skog and R. Schuch Phys. Rev. A 82, 052901 (2010) [11] Molybdenum L-shell x-ray production by 350-600 keV Xeq+ (q=25 to 30) ions H. Zhang, X. Chen*, Z. Yang, J. Xu, Y. Cui, J. Shao, X. Zhang, Y. Zhao, Y. Zhang and G. Xiao Nucl. Instr. and Meth. B 268 1564–1567 (2010) [12] Evidence of Sequentially Formed Charge Patches Guiding Ions through Nanocapillaries P. Skog, HQ. Zhang, and R. Schuch Phys. Rev. Lett. 101 223202 (2008) [13] Low isocharged sequence ions with helium collisions: projectile core dependence Deyang Yu, Xiaohong Cai, Rongchun Lu, Fangfang Ruan, Caojie Shao, Hongqiang Zhang, Ying Cui, Jun Lu, Xu Xu, Jianxiong Shao, Baowei Ding, Zhihu Yang, Ximeng Chen and Zhaoyuan Liu Phys. Rev. A 76 022710 (2007) [14] Interaction of Highly Charged Xeq+ (q = 26, 27, 30) Ions with Molybdenum Surface Liu Zhaoyuan, Zhang Hongqiang, Chen Ximeng , Yang Zhihu, Xu Jinzhang, Cui Ying, Xu Xu, Shao Jianxiong, Xiao Guoqing, Zhang Xiaoan,Zhao Yongtao and Zhang Yanping, International Journal of Modern Physics B 19 2443 (2005)