• Chinese Optics Letters
  • Vol. 18, Issue 8, 080002 (2020)
Qi Guo1、2、*, Tian Liu1、2, Xiaoqian Wang3、**, Zhigang Zheng3, Aleksey Kudreyko4, Huijie Zhao1、2, V. Chigrinov5、6、7, and Hoi-Sing Kwok6
Author Affiliations
  • 1School of Instrumentation and Optoelectronic Engineering, Beihang University, Beijing 100191, China
  • 2Beihang University Qingdao Research Institute, Qingdao 266101, China
  • 3Physics Department, East China University of Science and Technology, Shanghai 200237, China
  • 4Department of Medical Physics and Informatics, Bashkir State Medical University, Ufa 450008, Russia
  • 5School of Physics and Optoelectronic Engineering, Foshan University, Foshan 528000, China
  • 6State Key Laboratory on Advanced Displays and Optoelectronics Technologies, The Hong Kong University of Science and Technology, Hong Kong 999077, China
  • 7Department of Theoretical Physics, Moscow Region State University, Mytishi 141014, Russia
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    DOI: 10.3788/COL202018.080002 Cite this Article Set citation alerts
    Qi Guo, Tian Liu, Xiaoqian Wang, Zhigang Zheng, Aleksey Kudreyko, Huijie Zhao, V. Chigrinov, Hoi-Sing Kwok. Ferroelectric liquid crystals for fast switchable circular Dammann grating [Invited][J]. Chinese Optics Letters, 2020, 18(8): 080002 Copy Citation Text show less
    References

    [1] D. Fattal, Z. Peng, T. Tran, S. Vo, M. Fiorentino, J. Brug, R. G. Beausoleil. Nature, 495, 348(2013).

    [2] H. Chen, Y. Weng, D. Xu, N. V. Tabiryan, S. T. Wu. Opt. Express, 24, 7287(2016).

    [3] M. Khorasaninejad, F. Capasso. Science, 358, eaam8100(2017).

    [4] S. V. Serak, D. E. Roberts, J.-Y. Hwang, S. R. Nersisyan, N. V. Tabiryan, T. J. Bunning, D. M. Steeves, B. R. Kimball. J. Opt. Soc. Am. B, 34, B56(2017).

    [5] P. Chen, L. L. Ma, W. Duan, J. Chen, S. J. Ge, Z. H. Zhu, M. J. Tang, R. Xu, W. Gao, T. Li, W. Hu, Y. Q. Lu. Adv. Mater., 30, 1705865(2018).

    [6] R. Xu, P. Chen, J. Tang, W. Duan, S.-J. Ge, L.-L. Ma, R.-X. Wu, W. Hu, Y.-Q. Lu. Phys. Rev. Appl., 10, 034061(2018).

    [7] P. Chen, S.-J. Ge, W. Duan, B.-Y. Wei, G.-X. Cui, W. Hu, Y.-Q. Lu. ACS Photon., 4, 1333(2017).

    [8] K. B. Doh, K. Dobson, T. C. Poon, P. S. Chung. Appl. Opt., 48, 134(2009).

    [9] Y. Shinoda, J. P. Liu, P. S. Chung, K. Dobson, X. Zhou, T. C. Poon. Appl. Opt., 50, B38(2011).

    [10] S. Zhao, P. S. Chung. Opt. Commun., 279, 1(2007).

    [11] Y. Zhang, N. Gao, C. Xie. Appl. Phys. Lett., 100, 041107(2012).

    [12] Y. Xu, X. Han, G. Li, J. Liu, K. Xia, J. Li. Opt. Eng., 55, 056101(2016).

    [13] F. J. Wen, Z. Chen, P. S. Chung. Appl. Opt., 49, 648(2010).

    [14] F. J. Wen, P. S. Chung. Appl. Opt., 47, 5197(2008).

    [15] C. Zhou, J. Jia, L. Liu. Opt. Lett., 28, 2174(2003).

    [16] S. Zhao, P. S. Chung. Opt. Lett., 31, 2387(2006).

    [17] U. Levy, B. Desiatov, I. Goykhman, T. Nachmias, A. Ohayon, S. E. Meltzer. Opt. Lett., 35, 880(2010).

    [18] I. Moreno, J. A. Davis, D. M. Cottrell, N. Zhang, X. C. Yuan. Opt. Lett., 35, 1536(2010).

    [19] D. Luo, X. W. Sun, H. T. Dai, H. V. Demir. Appl. Opt., 50, 2316(2011).

    [20] X. Wang, S. Wu, W. Yang, C. Yuan, X. Li, Z. Liu, M. Tseng, V. G. Chigrinov, H. Kwok, D. Shen, Z. Zheng. Polymers (Basel), 9, 380(2017).

    [21] Y. Liu, P. Chen, R. Yuan, C.-Q. Ma, Q. Guo, W. Duan, V. G. Chigrinov, W. Hu, Y.-Q. Lu. Opt. Express, 27, 36903(2019).

    [22] Q. Guo, X. Zhao, H. Zhao, V. G. Chigrinov. Opt. Lett., 40, 2413(2015).

    [23] Q. Guo, A. K. Srivastava, E. P. Pozhidaev, V. G. Chigrinov, H. S. Kwok. Appl. Phys. Express, 7, 021701(2014).

    [24] Q. Guo, K. X. Yan, V. Chigrinov, H. J. Zhao, M. Tribelsky. Crystals, 9, 470(2019).

    [25] E. A. Shteyner, A. K. Srivastava, V. G. Chigrinov, H.-S. Kwok, A. D. Afanasyev. Soft Matter, 9, 5160(2013).

    [26] W. Hu, A. Kumar Srivastava, X.-W. Lin, X. Liang, Z.-J. Wu, J.-T. Sun, G. Zhu, V. Chigrinov, Y.-Q. Lu. Appl. Phys. Lett., 100, 111116(2012).

    [27] F. Fan, L. Yao, X. Wang, L. Shi, A. Srivastava, V. Chigrinov, H.-S. Kwok, S. Wen. Crystals, 7, 79(2017).

    CLP Journals

    [1] Zhiwei Ge, Xuequn Hou, Yu Zhao, Qingtian Meng. Molecular orientation induced by H+ collision and modulated with combined fields[J]. Chinese Optics Letters, 2021, 19(11): 110201

    Data from CrossRef

    [1] Vladimir Chigrinov, Aleksey Kudreyko, Qi Guo. Patterned Photoalignment in Thin Films: Physics and Applications. Crystals, 11, 84(2021).

    Qi Guo, Tian Liu, Xiaoqian Wang, Zhigang Zheng, Aleksey Kudreyko, Huijie Zhao, V. Chigrinov, Hoi-Sing Kwok. Ferroelectric liquid crystals for fast switchable circular Dammann grating [Invited][J]. Chinese Optics Letters, 2020, 18(8): 080002
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