Please wait a minute...
Chin. Phys. B, 2021, Vol. 30(4): 044201    DOI: 10.1088/1674-1056/abd390
ELECTROMAGNETISM, OPTICS, ACOUSTICS, HEAT TRANSFER, CLASSICAL MECHANICS, AND FLUID DYNAMICS Prev   Next  

Local dynamical characteristics of Bessel beams upon reflection near the Brewster angle

Zhi-Wei Cui(崔志伟), Shen-Yan Guo(郭沈言), Yuan-Fei Hui(惠元飞), Ju Wang(王举), and Yi-Ping Han(韩一平)
1 School of Physics and Optoelectronic Engineering, Xidian University, Xi'an 710071, China
Abstract  We analytically and numerically study the local dynamical characteristics of the Bessel beams reflected from an air-glass interface near the Brewster angle. A Taylor series expansion based on the angular spectrum component is applied to correct the reflection coefficients near the Brewster angle. Using a hybrid angular spectrum representation and vector potential method, the explicit expressions for the electric and magnetic field components of the reflected Bessel beams are derived analytically under paraxial approximation. The local energy, momentum, spin, and orbital angular momentum of the Bessel beams upon reflection near the Brewster angle are examined numerically by utilizing a canonical approach. Numerical simulation results show that the properties of these dynamical quantities for the Bessel beams near Brewster angle incidence change abruptly, and are significantly affected by their topological charge, half-cone angle, and polarization state. The present study has its importance in understanding the dynamical aspects of optical beams with vortex structure and diffraction-free nature during the reflection process.
Keywords:  Bessel beams      reflection      Brewster angle      momentum      angular momentum  
Received:  22 September 2020      Revised:  23 October 2020      Accepted manuscript online:  15 December 2020
PACS:  42.25.Gy (Edge and boundary effects; reflection and refraction)  
  42.60.Jf (Beam characteristics: profile, intensity, and power; spatial pattern formation)  
  42.50.Tx (Optical angular momentum and its quantum aspects)  
Fund: Project supported by the Natural Science Foundation of Shaanxi Province, China (Grant No. 2020JM-210) and the National Natural Science Foundation of China (Grant No. 61675159).
Corresponding Authors:  Corresponding author. E-mail: zwcui@mail.xidian.edu.cn Corresponding author. E-mail: yuanfeihuixd@163.com   

Cite this article: 

Zhi-Wei Cui(崔志伟), Shen-Yan Guo(郭沈言), Yuan-Fei Hui(惠元飞), Ju Wang(王举), and Yi-Ping Han(韩一平) Local dynamical characteristics of Bessel beams upon reflection near the Brewster angle 2021 Chin. Phys. B 30 044201

1 Durnin J, Miceli J J and Eberly J H 1987 Phys. Rev. Lett. 58 1499
2 Bouchal Z 2003 Czechoslovak Journal of Physics 53 537
3 Ponomarenko S A, Huang W H and Cada M 2007 Opt. Lett. 32 2508
4 Yu X H, Yao B L, Lei M, Yan S H, Yang Y L, Li R Z and Cai Y N 2015 Acta Phys. Sin. 64 244203 (in Chinese)
5 Davis J A, Moreno I, Badham K, Sanchez-Lopez M M and Cottrell D M 2016 Opt. Lett. 41 2270
6 Rodriguez E S G, Machnoor M and Lazzi G 2017 IEEE Trans. Anten. Propag. 65 5228
7 Yang Z S, Zhang X, Bai C L and Wang M H 2018 J. Opt. Soc. Am. A 35 452
8 Cabrera-Rosas O D, Sosa-Sanchez C T, Julian-Macias I, Juarez-Reyes S A, Ortega-Vidals P, Espindola-Ramos E and Silva-Ortigoza G 2019 J. Opt. 21 035603
9 Chafiq A, Gouesbet G and Belafhal A 2020 J. Quantum Spectrosc. Radiat. Transfer 241 106750
10 Durnin J 1987 J. Opt. Soc. Am. A 4 651
11 Horvath Z L, Erdelyi M, Szabo G, Bor Z, Tittel F K and Cavallaro J R 1997 J. Opt. Soc. Am. A 14 3009
12 Chattrapiban N, Rogers E A, Cofield D, Hill W T and Roy R 2003 Opt. Lett. 28 2183
13 Martelli P, Tacca M, Gatto A, Moneta G and Martinelli M 2010 Opt. Express 18 7108
14 Gong L, Ren Y X, Xue G S, Wang Q C, Zhou J H, Zhong M C, Wang Z Q and Li Y M 2013 Appl. Opt. 52 4566
15 Du T J, Wang T and Wu F T 2013 Acta Phys. Sin. 62 134103 (in Chinese)
16 Moreno I, Davis J A, Sanchez-Lopez M M, Badham K and Cottrell D M 2015 Opt. Lett. 40 5451
17 Chen A T, Wang J J, Han Y P, Cui Z W and Yu M P 2018 Opt. Express 26 26766
18 Lai H M and Chan S W 2002 Opt. Lett. 27 680
19 Merano M, Aiello A, van Exter M P and Woerdman J P 2009 Nat. Photon. 3 337
20 Luo H L, Zhou X X, Shu W X, Wen S C and Fan D Y 2011 Phys. Rev. A 84 043806
21 Mugnai D 2002 Opt. Commun. 207 95
22 Novitsky A V and Barkovsky L M 2008 J. Opt. Pure Appl. Opt. 10 075006
23 Novitsky A V and Novitsky D V 2008 Opt. Commun. 281 2727
24 Aiello A and Woerdman J P 2011 Opt. Lett. 36 543
25 Brand?o P A and Pires D G 2017 Phys. Lett. A 381 813
26 Liu J W, Li H Y, Li R X, Bai L and Wu Z S 2020 J. Quantum Spectrosc. Radiat. Transfer 251 107046
27 Mugnai D 2013 Opt. Commun. 294 17
28 Volke-Sepulveda K, Garcés-Chàvez V, Chàvez-Cerda S, Arlt J and Dholakia K 2002 J. Opt. B-Quantum Semiclass. Opt. 4 S82
29 Litvin I A, Dudley A and Forbes A 2011 Opt. Express 19 16760
30 Hernandez-Cedillo C L and Jauregui R 2011 J. Opt. 13 064021
31 Belyi V N, Khilo N A, Kurilkina S N and Kazak N S 2013 J. Appl. Spectrosc. 80 458
32 Belyi V N, Khilo N A, Kurilkina S N and Kazak N S 2013 J. Opt. 15 044018
33 Aleksanyan A and Brasselet E 2016 Optica 3 167
34 Nazarov S A, Gorbach D V, Mel'nikova E A, Kurilkina S N and Tolstik A L 2018 J. Opt. Technol. 85 189
35 Luo H, Zhou X, Shu W, Wen S and Fan D 2011 Phys. Rev. A 84 043806
36 Ritboon A, Croke S and Barnett S M 2019 J. Opt. Soc. Am. B 36 482
37 Bliokh K Y and Nori F 2015 Phys. Rep. 592 1
38 Bliokh K Y, Bekshaev A Y and Nori F 2017 Phys. Rev. Lett. 119 073901
39 Song P, Cui Z, Hui Y, Zhao W, Wang J and Han Y 2020 J. Quantum Spectrosc. Radiat. Transfer 241 106715
40 Erdelyi A, Magnus W and Oberhettinger F1954 Tables of integral transforms(New York: McGraw-Hill)
41 Luo H, Wen S, Shu W, Tang Z, Zou Y and Fan D 2009 Phys. Rev. A 80 043810
42 Luo H, Wen S, Shu W and Fan D 2010 Phys. Rev. A 82 043825
43 Qiu X, Zhang Z, Xie L, Qiu J, Gao F and Du J 2015 Opt. Lett. 40 1018
[1] Diffraction deep neural network based orbital angular momentum mode recognition scheme in oceanic turbulence
Hai-Chao Zhan(詹海潮), Bing Chen(陈兵), Yi-Xiang Peng(彭怡翔), Le Wang(王乐), Wen-Nai Wang(王文鼐), and Sheng-Mei Zhao(赵生妹). Chin. Phys. B, 2023, 32(4): 044208.
[2] Enhanced and tunable Imbert-Fedorov shift based on epsilon-near-zero response of Weyl semimetal
Ji-Peng Wu(伍计鹏), Yuan-Jiang Xiang(项元江), and Xiao-Yu Dai(戴小玉). Chin. Phys. B, 2023, 32(3): 037503.
[3] Asymmetrical spiral spectra and orbital angular momentum density of non-uniformly polarized vortex beams in uniaxial crystals
Ling-Yun Shu(舒凌云), Ke Cheng(程科), Sai Liao(廖赛), Meng-Ting Liang(梁梦婷), and Ceng-Hao Yang(杨嶒浩). Chin. Phys. B, 2023, 32(2): 024211.
[4] Temporal response of laminated graded-bandgap GaAs-based photocathode with distributed Bragg reflection structure: Model and simulation
Zi-Heng Wang(王自衡), Yi-Jun Zhang(张益军), Shi-Man Li(李诗曼), Shan Li(李姗), Jing-Jing Zhan(詹晶晶), Yun-Sheng Qian(钱芸生), Feng Shi(石峰), Hong-Chang Cheng(程宏昌), Gang-Cheng Jiao(焦岗成), and Yu-Gang Zeng(曾玉刚). Chin. Phys. B, 2022, 31(9): 098505.
[5] Transmissive 2-bit anisotropic coding metasurface
Pengtao Lai(来鹏涛), Zenglin Li(李增霖), Wei Wang(王炜), Jia Qu(曲嘉), Liangwei Wu(吴良威),Tingting Lv(吕婷婷), Bo Lv(吕博), Zheng Zhu(朱正), Yuxiang Li(李玉祥),Chunying Guan(关春颖), Huifeng Ma(马慧锋), and Jinhui Shi(史金辉). Chin. Phys. B, 2022, 31(9): 098102.
[6] Controlling acoustic orbital angular momentum with artificial structures: From physics to application
Wei Wang(王未), Jingjing Liu(刘京京), Bin Liang (梁彬), and Jianchun Cheng(程建春). Chin. Phys. B, 2022, 31(9): 094302.
[7] Reflection and transmission of an Airy beam in a dielectric slab
Xiaojin Yang(杨小锦), Tan Qu(屈檀), Zhensen Wu(吴振森), Haiying Li(李海英), Lu Bai(白璐), Lei Gong(巩蕾), and Zhengjun Li(李正军). Chin. Phys. B, 2022, 31(7): 074202.
[8] Photoelectron momentum distributions of Ne and Xe dimers in counter-rotating circularly polarized laser fields
Zhi-Xian Lei(雷志仙), Qing-Yun Xu(徐清芸), Zhi-Jie Yang(杨志杰), Yong-Lin He(何永林), and Jing Guo(郭静). Chin. Phys. B, 2022, 31(6): 063202.
[9] Design of cylindrical conformal transmitted metasurface for orbital angular momentum vortex wave generation
Ben Fu(付犇), Shi-Xing Yu(余世星), Na Kou(寇娜), Zhao Ding(丁召), and Zheng-Ping Zhang(张正平). Chin. Phys. B, 2022, 31(4): 040703.
[10] Light-modulated electron retroreflection and Klein tunneling in a graphene-based n-p-n junction
Xingfei Zhou(周兴飞), Ziying Wu(吴子瀛), Yuchen Bai(白宇晨), Qicheng Wang(王起程), Zhentao Zhu(朱震涛), Wei Yan(闫巍), and Yafang Xu(许亚芳). Chin. Phys. B, 2022, 31(4): 047301.
[11] Beam alignments based on the spectrum decomposition of orbital angular momentums for acoustic-vortex communications
Gepu Guo(郭各朴), Xinjia Li(李昕珈), Qingdong Wang(王青东), Yuzhi Li(李禹志), Qingyu Ma(马青玉), Juan Tu(屠娟), and Dong Zhang(章东). Chin. Phys. B, 2022, 31(12): 124302.
[12] Spin transport properties in ferromagnet/superconductor junctions on topological insulator
Hong Li(李红) and Xin-Jian Yang(杨新建). Chin. Phys. B, 2022, 31(12): 127301.
[13] Microwave absorption properties regulation and bandwidth formula of oriented Y2Fe17N3-δ@SiO2/PU composite synthesized by reduction-diffusion method
Hao Wang(王浩), Liang Qiao(乔亮), Zu-Ying Zheng(郑祖应), Hong-Bo Hao(郝宏波), Tao Wang(王涛), Zheng Yang(杨正), and Fa-Shen Li(李发伸). Chin. Phys. B, 2022, 31(11): 114206.
[14] Strain-modulated anisotropic Andreev reflection in a graphene-based superconducting junction
Xingfei Zhou(周兴飞), Ziming Xu (许子铭), Deliang Cao(曹德亮), and Fenghua Qi(戚凤华). Chin. Phys. B, 2022, 31(11): 117403.
[15] Device simulation of quasi-two-dimensional perovskite/silicon tandem solar cells towards 30%-efficiency
Xiao-Ping Xie(谢小平), Qian-Yu Bai(白倩玉), Gang Liu(刘刚), Peng Dong(董鹏), Da-Wei Liu(刘大伟), Yu-Feng Ni(倪玉凤), Chen-Bo Liu(刘晨波), He Xi(习鹤), Wei-Dong Zhu(朱卫东), Da-Zheng Chen(陈大正), and Chun-Fu Zhang(张春福). Chin. Phys. B, 2022, 31(10): 108801.
No Suggested Reading articles found!