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创新资源平台
服务平台首页>协同创新>专家库>专家详情

庞晓炎(副教授)

所属单位:西北工业大学电子信息学院

担任职务:副教授

擅长领域:

联系方式:029-88431206 邮箱:登录后查看

自2014年5月至今在西北工业大学电子信息学院从教。

目前主要教授:

1. 《数理方程与特殊函数(英)》,本科国际班基础课程;

2. 《高等电磁理论(英)》,研究生国际班专业课程;

3.《物理光学与应用光学》,本科专业选修课程;

4.《近代光学》,研究生专业选修课程;

另外,协助校讲座教授Taco D. Visser的《Introduction to Modern Optics》,本科生综合素养类课程。

主要成就

  1. W. Miao, X. Pang*, W. Liu,“Photonic Wheels and Their Topological Reaction in a Strongly Focused Amplitude Tailored Beam”, IEEE Photonics J. (2020) (accecpted).

  2. X. Pang*, W. Liu, W. Miao, “Generation of Spiral Spin Density Vectors with a Circularly Polarized, Vortex

    Beam”, IEEE Photonics J. vol. 12, No. 1. pp. 1-14 (2020).

  3. X. Zhao, X. Pang*,G. Wan, “Tunable degree of polarization of an unpolarized, partially coherent beam with circular coherence in a high numerical aperture system”, Opt. Lett.,Vol. 44, No. 22. pp. 5574-5577 (2019).

  4. J. Li, X. Pang*, Z. Hu, "Multi-network Communication Gateway of IoT for Complex Environment"[C]//International Conference on Internet of Things as a Service. Springer, Cham, 2018: 120-126.

  5. X. Pang* and W. Miao,“Spinning spin density vectors along the propagation direction”,Opt. Lett., vol. 43, No. 19, pp. 4831-4834 (2018).

  6. X. Pang*, J. Cheng, and X. Zhao, "Polarization dynamics on optical axis ", Opt. Commun. vol.421, pp. 50-55 (2018)

  7.  X. Zhao, X. Pang*, J. Zhang, and G. Wan, “Transverse Focal Shift in Vortex Beams”, IEEE Photonics J., ol. 10, No. 1, p. 6500417 (2018). 

  8.  X. Liu, G. Wu, X. Pang, D. Kuebel and T.D. Visser*,  “Polarization and coherence in the Hanbury BrownTwiss effect”, J. Mod. Opt., accepted and published on line (2018).

  9.  G. Wu* and X. Pang, “Self-Healing Properties of Partially Coherent Schell-Model Beams”, IEEE Photonics J., vol. 9, No. 6, p. 6501311 (2017).

  10. J. Zhang, X. Pang* and J. Ding, Wavefront spacing and Gouy phase in strongly focused fields: the role of polarization”, J. Opt.  Soc.  Am.  A. vol. 34, no. 7, pp. 1132-1138 (2017). 

  11.  X. Zhao, J. Cheng, X. Pang* and G. Wan, “Properties of a strongly focused Gaussian beam with an off-axis vortex”, Opt. Commun., vol. 389, pp. 275-282 (2017).

  12. X. Pang*, “Gouy phase and phase singularities of tightly focused, circularly polarized vortex beams,” Opt. Commun.vol.338, pp. 534-539 (2015).

  13. X. Pang*, G. Gbur and T.D. Visser, “Cycle of phase, coherence and polarization singularities in Young’s three-pinhole experiment,” Opt. Express, vol. 23, pp. 34093-34108 (2015).

  14.  X. Pang, D.G.  Fischer and  T.D.  Visser*, “Wavefront spacing and the Gouy  phase  in the presence of spherical  aberration,” Opt. Lett. 39, pp.88-91 (2014).

  15.  X. Pang and  T.D.  Visser*, “Manifestation  of the Gouy  phase  in strongly focused, radially  polarized  beams,” Opt. Express, vol. 21, pp.  8331-8341 (2013).

  16. X. Pang, D.G. Fischer and T.D. Visser*, “Generalized Gouy phase for focused,  partially  coherent  light  and  its  implications  for optical  metrology,” J. Opt.  Soc.  Am.  A.,  vol.  29, pp. 989-993 (2012).

  17. X. Pang, T.D.  Visser*  and  E.  Wolf,  “Phase anomaly  and  phase  singularities of the field in the focal region of high-numerical aperture systems,”  Opt. Commun., vol. 284, pp.  5517-5522 (2011).

  18. X. Pang, G.  Gbur  and  T.D.  Visser*, “The  Gouy  phase  of Airy beams,” Optics Letters, vol. 36, pp.  2492-2494 (2011).