ELECTROMAGNETISM, OPTICS, ACOUSTICS, HEAT TRANSFER, CLASSICAL MECHANICS, AND FLUID DYNAMICS |
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Engineered photonic spin Hall effect of Gaussian beam in antisymmetric parity-time metamaterials |
Lu-Yao Liu(刘露遥)1,2, Zhen-Xiao Feng(冯振校)1,2, Dong-Mei Deng(邓冬梅)1,2, and Guang-Hui Wang(王光辉)1,2,† |
1 Guangdong Provincial Key Laboratory of Nanophotonic Functional Materials and Devices, South China Normal University, Guangzhou 510006, China; 2 Guangzhou Key Laboratory for Special Fiber Photonic Devices, South China Normal University, Guangzhou 510006, China |
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Abstract A model of the photonic spin Hall effect (PSHE) in antisymmetric parity-time (APT) metamaterials with incidence of Gaussian beams is proposed here. We derive the displacement expression of the PSHE in APT metamaterials based on the transport properties of Gaussian beams in positive and negative refractive index materials. Furthermore, detailed discussions are provided on the APT scattering matrix, eigenstate ratio, and response near exceptional points in the case of loss or gain. In contrast to the unidirectional non-reflection in parity-time (PT) symmetric systems, the transverse shift that arises from both sides of the APT structure is consistent. By effectively adjusting the parameters of APT materials, we achieve giant displacements of the transverse shift. Finally, we present a multi-layer APT structure consisting of alternating left-handed and right-handed materials. By increasing the number of layers, Bragg oscillations can be generated, leading to an increase in resonant peaks in transverse shift. This study presents a new approach to achieving giant transverse shifts in the APT structure. This lays a theoretical foundation for the fabrication of related nano-optical devices.
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Received: 14 February 2023
Revised: 06 April 2023
Accepted manuscript online: 10 April 2023
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PACS:
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42.15.Eq
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(Optical system design)
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42.25.Gy
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(Edge and boundary effects; reflection and refraction)
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42.50.Tx
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(Optical angular momentum and its quantum aspects)
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Fund: Project supported by the Natural Science Foundation of Guangdong Province (Grant Nos. 2018A030313480 and 2022A1515012377). |
Corresponding Authors:
Guang-Hui Wang
E-mail: wanggh@scnu.edu.cn
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Cite this article:
Lu-Yao Liu(刘露遥), Zhen-Xiao Feng(冯振校), Dong-Mei Deng(邓冬梅), and Guang-Hui Wang(王光辉) Engineered photonic spin Hall effect of Gaussian beam in antisymmetric parity-time metamaterials 2023 Chin. Phys. B 32 094201
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[1] Onoda M, Murakami S and Nagaosa N 2004 Phys. Rev. Lett. 93 083901 [2] Hosten O and Kwiat P 2008 Science 319 5864 [3] Luo H L, Wen S C, Shu W X, Tang Z X, Zou Y H and Fan D Y 2009 Phys. Rev. A 80 043810 [4] Qin Y, Li Y, Feng X B, Liu Z P, He H Y, Xiao Y F and Gong Q H 2010 Opt. Express 18 16832 [5] Hermosa N, Nugrowati A M, Aiello A and Woerdman J P 2011 Opt. Lett. 36 3200 [6] Zhu W G and She W L 2015 Opt. Lett. 40 2961 [7] Tang T T, Li J, Zhang Y F, Li C Y and Luo L 2016 Opt. Lett. 24 28113 [8] Tang T T, Li C Y and Luo L 2016 Sci. Rep. 6 30762 [9] Zhu W G, Jiang M J, Guan H Y, Yu J H, Lu H H, Zhang J and Chen Z 2017 Photon. Res. 5 684 [10] Wu Y D, Sheng L J, Xie L G, Li S X, Nie P, Chen Y, Zhou X X and Ling X H 2020 Carbon 166 396 [11] Xu G D, Zang T C, Mao H M and Pan T 2011 Phys. Rev. A 83 053828 [12] Wang H L and Zhang X D 2011 Phys. Rev. A 83 053820 [13] Jiang M J, Lin H, Zhuo L Q, Zhu W G, Guan H Y, Yu J H, Lu H H, Tan J Y and Chen Z 2018 Opt. Express 26 6593 [14] Bliokh K Y and Bliokh Y P 2006 Phys. Rev. Lett. 96 073903 [15] Liu S Y, Yin X X and Zhao H X 2022 Opt. Express 30 31925 [16] Liang C K, Liu D X, Liu R, Deng D M and Wang G H 2022 Nanophotonics 11 3475 [17] Zhu W G, Xu H, Pan J T, Zhang S, Zheng H D, Zhong Y C, Yu J H and Chen Z 2020 Opt. Express 28 25869 [18] Li J, Tang T T, Luo L, Shen J, Li C Y, Qin J and Bi L 2019 Photon. Res. 7 1014 [19] Zhou X, Ding Y P, Yue Q X, He S L, He Y J and Deng D M 2022 Opt. Laser Technol. 155 108115 [20] He S S, Zhou J X, Chen S Z, Shu W X, Luo H L and Wen S C 2020 Opt. Lett. 45 877 [21] Bender C M and Boettcher S 1998 Phys. Rev. Lett. 80 5243 [22] Bender C M, Boettcher S and Meisinger P N 1999 J. Math. Phys. 40 2201 [23] El-Ganainy R, Makris K G, Christodoulides D and Musslimani Z H 2007 Opt. Lett. 32 2632 [24] Ge L and Tureci H E 2013 Phys. Rev. A 88 053810 [25] Zhang X L, Jiang T and Chan C T 2019 Light Sci. Appl. 8 88 [26] Peng P, Cao W X, Shen C, Qu W Z, Wen J M, Jiang L and Xiao Y H 2016 Nat. Phys. 12 1139 [27] Zhou X X, Lin X, Xiao Z C, Low T, Alú A, Zhang B L and Sun H D 2019 Phys. Rev. B 100 115429 [28] Liu R, Wang G G, Deng D M and Zhang T T 2021 Opt. Express 29 22192 [29] Ge L, Chong Y D and Stone A D 2012 Phys. Rev. A 85 023802 [30] Yang F, Liu Y C and You L 2017 Phys. Rev. A 96 053845 [31] Fu Y Y, Fei Y, Dong D X and Liu Y W 2019 Front. Phys. 14 62601 [32] Ma P J and Gao L 2017 Opt. Express 25 9676 [33] Feng L, Xu Y L, Fegadolli W S, Lu M H, Oliveira J E, Almeida V R, Chen Y F and Scherer A 2013 Nat. Mater. 12 108 [34] Wu J H, Artoni M and La Rocca G C 2014 Phys. Rev. Lett. 113 123004 [35] Ge L, Chong Y D and Stone A D 2012 Phys. Rev. A 85 023802 [36] Xu J F, Yang X B, Chen H H and Lin Z H 2020 Chin. Phys. B 29 064201 [37] Cao P C and Zhu X F 2021 Chin. Phys. B 30 030505 [38] Tang M, Zhou X X, Luo H L and Wen S C 2012 Chin. Phys. B 21 124201 [39] Luo H, Ling X, Zhou X, Shu W, Wen S and Fan D 2011 Phys. Rev. A 84 033801 |
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