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个人简介

于2019年加入电子科技大学光电科学与工程学院任教。自2014年于南开大学获得博士学位以来,先后在南京理工大学、宁波大学从事教学科研工作,并赴荷兰特温特大学从事博士后研究。在光学成像、多光子干涉及光场调控方面展开了深入研究,主持国家自然科学基金项目一项,在Optica、Opt. Lett.、Opt. Express、Phys. Rev. A 、Appl. Phys. Lett.等刊物上发表论文十余篇。

研究领域

光学成像、多光子干涉、光场调控、低维纳米材料的光电以及光谱学性质的研究

近期论文

查看导师最新文章 (温馨提示:请注意重名现象,建议点开原文通过作者单位确认)

[15] P. Hong, Sub-Rayleigh single-pixel imaging via optical fluctuation, Opt. Lett. XX (2019). [14] P. Hong and G. Zhang, A review of super-resolution imaging through optical high-order interference [Invited], Appl. Sci. 9, 1166 (2019). [13] L. Li, P. Hong, G. Zhang, Transverse revival and fractional revival of Hanbury Brown-Twiss bunching effect with discrete chaotic light, Phys. Rev. A 99, 023848 (2019). [12] P. Hong, Two-photon imaging assisted by a thin dynamic scattering layer, Appl. Phys. Lett. 113, 101109 (2018). [11] P. Hong, O. Ojambati, A. Lagendijk, A. P. Mosk, and W. L. Vos, 3D spatially-resolved optical energy density enhanced by wavefront shaping, Optica 5, 844 (2018). [10] F. Mariani, W. Löeffler, M. Aas, O. Ojambati, P. Hong, W. L. Vos, M. van Exter, Scattering media characterization with phase-only wavefront modulation, Opt. Express 26, 2369 (2018). [9] L. Li, P. Hong, G. Zhang, Experimental realization of Heisenberg-limit resolution imaging through a phase-controlled screen with classical light, Opt. Express 26, 18950 (2018). [8] P. Hong and G. Zhang, Heisenberg-resolution imaging through a phase controlled screen, Opt. Express 25, 22789 (2017). [7] P. Hong, L. Li, J. Liu, and G. Zhang, Active control on high-order coherence and statistic characterization on random phase fluctuation of two classical point sources, Sci. Rep. 6, 23614 (2016). [6] P. Hong and G. Zhang, Super-resolved optical lithography with phase controlled source, Phys. Rev. A 91, 053830 (2015). [5] P. Hong and G. Zhang, Synchronous position two-photon interference of random phase grating, J. Opt. Soc. Am. A 32, 1256 (2015). [4] L. Xu, H. Yang, P. Hong, F. Bo, J. Xu, and G. Zhang, Lensless imaging based on coherent backscattering in random media, AIP Advances 4, 7124 (2014). [3] P. Hong and G. Zhang, Subwavelength interference with an effective entangled source, Phys. Rev. A 88, 043838 (2013). [2] P. Hong, L. Xu, Z. Zhai, and G. Zhang, High visibility two-photon interference with classical light, Opt. Express 21, 14056 (2013). [1] P. Hong, J. Liu, and G. Zhang, Two-photon superbunching of thermal light via multiple two-photon path interference, Phys. Rev. A 86, 013807 (2012).

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