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Chin. Phys. B, 2017, Vol. 26(10): 104202    DOI: 10.1088/1674-1056/26/10/104202
ELECTROMAGNETISM, OPTICS, ACOUSTICS, HEAT TRANSFER, CLASSICAL MECHANICS, AND FLUID DYNAMICS Prev   Next  

Near-field characteristics of highly non-paraxial subwavelength optical fields with hybrid states of polarization

Rui-Pin Chen(陈瑞品)1, Teng-Yue Gao(高腾跃)1, Khian-Hooi Chew(周健辉)2, Chao-Qing Dai(戴朝卿)3, Guo-Quan Zhou(周国泉)3, Sai-Ling He(何赛灵)4
1. Department of Physics, Zhejiang Sci-Tech University, Hangzhou 310018, China;
2. Center for Theoretical Physics, Department of Physics, Faculty of Science, University of Malaya, Kuala Lumpur 50603, Malaysia;
3. School of Sciences, Zhejiang A & F University, Lin'an 311300, China;
4. Center for Optical and Electromagnetic Research, Zhejiang University, Joint Research Center of Photonics of the Royal Institute of Technology(Sweden) and Zhejiang University(China), Hangzhou 310027, China
Abstract  The vectorial structure of an optical field with hybrid states of polarization (SoP) in the near-field is studied by using the angular spectrum method of an electromagnetic beam. Physical images of the longitudinal components of evanescent waves are illustrated and compared with those of the transverse components from the vectorial structure. Our results indicate that the relative weight integrated over the transverse plane of the evanescent wave depends strongly on the number of the polarization topological charges. The shapes of the intensity profiles of the longitudinal components are different from those of the transverse components, and it can be manipulated by changing the initial SoP of the field cross-section. The longitudinal component of evanescent wave dominates the near-field region. In addition, it also leads to three-dimensional shape variations of the optical field and the optical spin angular momentum flux density distributions.
Keywords:  hybrid states of polarization      evanescent wave      angular spectrum method      longitudinal component  
Received:  20 March 2017      Revised:  08 May 2017      Accepted manuscript online: 
PACS:  42.25.Bs (Wave propagation, transmission and absorption)  
  42.25.Ja (Polarization)  
  42.60.Jf (Beam characteristics: profile, intensity, and power; spatial pattern formation)  
Fund: Project supported by the Zhejiang Provincial Natural Science Foundation, China (Grant Nos. LZ17A040001 and LY16A040014), the National Natural Science Foundation of China (Grant Nos. 11574271 and 11574272), the Scientific Research Foundation for the Returned Overseas Chinese Scholars, State Education Ministry, and the Science Research Foundation of Zhejiang Sci-Tech University (ZSTU), China (Grant No. 14062078-Y).
Corresponding Authors:  Rui-Pin Chen     E-mail:  chenrp@zstu.edu.cn

Cite this article: 

Rui-Pin Chen(陈瑞品), Teng-Yue Gao(高腾跃), Khian-Hooi Chew(周健辉), Chao-Qing Dai(戴朝卿), Guo-Quan Zhou(周国泉), Sai-Ling He(何赛灵) Near-field characteristics of highly non-paraxial subwavelength optical fields with hybrid states of polarization 2017 Chin. Phys. B 26 104202

[1] Sherman G C, Stamnes J J and Lalor E 1976 J. Math. Phys. 17 760
[2] Fornel F D 2001 Evanescent Waves:From Newtonian Optics to Atomic Optics (Berlin:Springer)
[3] Agrawal G P and Lax M 1983 Phys. Rev. 27 1693
[4] Hall D G 1996 Opt. Lett. 21 9
[5] Shchegrov A V and Carney P S 1999 J. Opt. Soc. Am. B 16 2583
[6] Petrov N I 2003 J. Opt. Soc. Am. B 20 2385
[7] Rizza C, Ciattoni A and Palange E 2010 Opt. Express 18 7617
[8] Merlin R 2007 Science 317 927
[9] Grbic A, Jiang L and Merlin R 2008 Science 320 511
[10] Zhan Q 2009 Adv. Opt. Photon. 1 1
[11] Chen R P, Chen Z, Chew K H, Li P G, Yu Z, Ding J and He S 2015 Sci. Rep. 5 10628
[12] Wang X L, Ding J P, Ni W J, Guo C S and Wang H T 2007 Opt. Lett. 32 3549
[13] Wang X L, Li Y N, Chen J, Guo C S, Ding J P and Wang H T 2010 Opt. Express 18 10786
[14] Cui S, Chen Z, Zhang L and Pu J 2013 Opt. Lett. 38 4821
[15] Deng D 2006 J. Opt. Soc. Am. B 23 1228
[16] Deng D, Guo Q, Wu L and Yang X 2007 J. Opt. Soc. Am. B 24 636
[17] Chen R P, Chew K H, Gu B and Zhou G 2015 J. Opt. 17 065605
[18] Sundaram C M, Prabakaran K, Anbarasan P M, Rajesh K B and Musthafa A M 2016 Chin. Phys. Lett. 33 064203
[19] Zhan Q and Leger J 2002 Opt. Express 10 324
[20] Dorn R, Quabis S and Leuchs G 2003 Phys. Rev. Lett. 91 233901
[21] Chen R P, Zhong L X, Chew K H, Zhao T Y and Zhang X 2015 Laser Phys. 25 075401
[22] Hu K, Chen Z and Pu J 2012 J. Opt. Soc. Am. A 29 1099
[23] Prabakaran K, Rajesh K B, Sumathira S, Bharathi M D, Hemamalini R, Musthafa A M and Aroulmoji V 2016 Chin. Phys. Lett. 33 094203
[24] Chen R P, Chew K H, Zhou G, Dai C Q and He S 2016 Opt. Express 24 28143
[25] Helseth L E 2008 Phys. Rev. A 78 013819
[26] Martínez-Herrero R, Mejías P M, Juvells I and Carnicer A 2012 Appl. Phys. B 106 151
[27] Martínez-Herrero R, Mejías P M and Carnicer A 2008 Opt. Express 16 2845
[28] Chen R P and Li G 2013 Opt. Express 21 22246
[29] Lerman G M, Yanai A and Levy U 2009 Nano Lett. 9 2139
[30] Lin J, Mueller J P B, Wang Q, Yuan G, Antoniou N, Yuan X C and Capasso F 2013 Scince 340 331
[31] Deng D and Guo Q 2007 Opt. Lett. 32 2711
[32] Lu Y Q, Cheng X Y, Xu M, Xu J and Wang J 2016 Acta Phys. Sin. 65 204207(in Chinese)
[33] Dong G X, Shi H Y, Xia S, Li W, Zhang A X, Xu Z and Wei X Y 2016 Chin. Phys. B 25 084202
[34] Wu J L, Lin B Q and Da X Y 2016 Chin. Phys. B 25 088101
[35] Goodman J W 2004 Introduction to Fourier Optics (Greenwood Village:Roberts and Company)
[36] Berry M V 1998 Proc. SPIE 3487 6
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