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液晶软光子学——光场的多自由度调控

陆延青

陆延青. 液晶软光子学——光场的多自由度调控[J]. 物理, 2023, 52(2): 116-124. DOI: 10.7693/wl20230205
引用本文: 陆延青. 液晶软光子学——光场的多自由度调控[J]. 物理, 2023, 52(2): 116-124. DOI: 10.7693/wl20230205
LU Yan-Qing. Liquid crystal soft mattonics——multi-degree manitipulation of light[J]. PHYSICS, 2023, 52(2): 116-124. DOI: 10.7693/wl20230205
Citation: LU Yan-Qing. Liquid crystal soft mattonics——multi-degree manitipulation of light[J]. PHYSICS, 2023, 52(2): 116-124. DOI: 10.7693/wl20230205

液晶软光子学——光场的多自由度调控

详细信息
    通讯作者:

    陆延青,email:yqlu@nju.edu.cn

Liquid crystal soft mattonics——multi-degree manitipulation of light

  • 摘要: 液晶是一类典型的软物质。它具有优异的外场调谐特性以及多层级的组装结构特征。文章介绍了作者在液晶光控取向技术及其光学应用方面取得的进展,如对液晶进行图案化编码实现任意液晶微结构的制备及多层级操纵,对光场的振幅、相位、偏振及波长等多自由度进行灵活、高效的调控,实现功能可调的液晶太赫兹器件等。
    Abstract: Liquid crystal is a typical soft matter, with excellent external field tunability and hierarchical self-assembly. Here we present our recent work on the use of photo-alignment to manipulate the microstructure and even hierarchical structure of liquid crystals, resulting in various novel physical effects. Liquid crystal microstructures of arbitrary design have been fabri- cated by photo-patterning, which enables flexible and efficient control of the multi-dimensional parameters of light such as the amplitude, phase, polarization and wavelength. Liquid crystal based tunable terahertz devices have also been devised.
  • [1]

    Wu H, Hu W, Hu H C et al. Opt. Express, 2012, 20:16684

    [2]

    Chen P, Ge S J, Duan W et al. ACS Photonics, 2017, 4:1333

    [3]

    Chen P, Wei B Y, Ji W et al. Photonics Res., 2015, 3:133

    [4]

    Wei B Y, Chen P, Hu W et al. Sci. Rep., 2015, 5:17484

    [5]

    Wei B Y, Hu W, Ming Y et al. Adv. Mater., 2014, 26:1590

    [6]

    Ma L L, Li S S, Li W S et al. Adv. Opt. Mater., 2015, 3:1691

    [7]

    Chen P, Ma L L, Duan W et al. Adv. Mater., 2018, 30:1705865

    [8]

    Chen P, Ma L L, Hu W et al. Nat. Commun., 2019, 10:2518

    [9]

    Ma L L, Liu C, Wu S B et al. Sci. Adv., 2021, 7:eabh3505

    [10]

    Ma L L, Wu S B, Hu W et al. ACS Nano, 2019, 13:13709

    [11]

    Shen Z X,Zhou S H,Li X A et al. Adv. Photonics,2020,2:036002

    [12]

    Ma L L,Hu W,Zheng Z G et al. Adv. Opt. Mater.,2019,7:1900393

    [13]

    Ma L L, Li C Y, Pan J T et al. Light Sci. Appl., 2022, 11:270

    [14] 曹慧敏,吴赛博,王靖阁等.液晶与显示, 2021, 36:921
    [15]

    Ge S J, Ji W, Cui G X et al. Opt. Mater. Express, 2014, 4:2535

    [16]

    Lin X W, Hu W, Hu X K et al. Opt. Lett., 2012, 37:3627

    [17]

    Srivastava A K, Hu W, Chigrinov V G et al. Appl. Phys. Lett., 2012, 101:031112

    [18]

    Akiyama H, Kawara T, Takada H et al. Liq. Cryst., 2002, 29:1321

    [19]

    Hu W, Srivastava A, Xu F et al. Opt. Express, 2012, 20:5384

    [20]

    Zheng Z G, Li Y N, Bisoyi H K et al. Nature, 2016, 531:352

    [21]

    Ma L L, Duan W, Tang M J et al. Polymers, 2017, 9:295

    [22]

    Borshch V, Kim Y K, Xiang J et al. Nat. Commun., 2013, 4:2635

    [23]

    Chen D,Porada J H,Hooper J B et al. Proc. Natl. Acad. Sci. USA, 2013, 110:15931

    [24]

    Yuan C L, Huang W B, Zheng Z G et al. Sci. Adv., 2019, 5:eaax9501

    [25]

    Xu C T,Liu B H,Peng C et al. Adv. Opt. Mater.,2022,10:2201088

    [26]

    Zhou K,Bisoyi H K,Jin J Q et al. Adv. Mater.,2018,30:1800237

    [27]

    Ok J M, Kim Y H, Jeong H S et al. Soft Matter, 2013, 9:10135

    [28]

    Honglawan A, Beller D A, Cavallaro M et al. Adv. Mater., 2011, 23:5519

    [29]

    Ma L L, Tang M J, Hu W et al. Adv. Mater., 2017, 29:1606671

    [30]

    Wu S B,Ma L L,Chen P et al. Adv. Opt. Mater.,2020,8:2000593

    [31]

    Wu J B, Wu S B, Cao H M et al. Adv. Opt. Mater., 2022, 10:2201015

    [32]

    Wu S B, Cao H M, Wu J B et al. Adv. Opt. Mater., 2022, 10:2102754

    [33]

    Lin H C, Lin Y H. Appl. Phys. Lett., 2011, 98:083503

    [34]

    Chen P, Ge S J, Ma L L et al. Phys. Rev. Appl., 2016, 5:044009

    [35]

    Chen P, Wei B Y, Hu W et al. Adv. Mater., 2020, 32:1903665

    [36] 袁方,谭庆贵,王光耀等.液晶与显示, 2022, 37:1411
    [37]

    Kim J, Li Y, Miskiewicz M N et al. Optica, 2015, 2:958

    [38]

    Slussarenko S, Murauski A, Du T et al. Opt. Express, 2011, 19:4085

    [39]

    Liu S J, Chen P, Ge S J et al. Laser Photonics Rev., 2022, 16:2200118

    [40]

    Barboza R,Bortolozzo U,Clerc M G et al. Phys. Rev. Lett., 2016, 117:053903

    [41]

    Kobashi J, Yoshida H, Ozaki M. Nat. Photonics, 2016, 10:389

    [42]

    Rafayelyan M,Tkachenko G,Brasselet E. Phys. Rev. Lett., 2016, 116:253902

    [43]

    Zhu L, Xu C T, Chen P et al. Light Sci. Appl., 2022, 11:135

    [44]

    Yuan R, Xu C T, Cao H et al. Adv. Sci., 2022, 9:2202424

    [45]

    Zhang Y H, Chen P, Xu C T et al. ACS Photonics, 2022, 9:1050

    [46]

    Xu C T, Chen P, Zhang Y H et al. Appl. Phys. Lett., 2021, 118:151102

    [47]

    Chen P, Shen Z X, Xu C T et al. Laser Photonics Rev., 2022, 16:2200011

    [48]

    Wang L, Lin X W, Liang X et al. Opt. Mater. Express, 2012, 2:1314

    [49]

    Reuter M,Vieweg N,Fischer B et al. APL Mater.,2013,1:012107

    [50]

    Wang L, Lin X W, Hu W et al. Light Sci. Appl., 2015, 4:e253

    [51]

    Sasaki T, Noda K, Kawatsuki N et al. Opt. Lett., 2015, 40:1544

    [52]

    Wang L, Ge S J, Hu W et al. Opt. Mater. Express, 2017, 7:2023

    [53]

    Ge S J, Chen P, Shen Z X et al. Opt. Express, 2017, 25:12349

    [54]

    Shen Z X, Zhou S H, Ge S J et al. Opt. Express, 2019, 27:8800

    [55]

    Shen Z X, Tang M J, Chen P et al. Adv. Opt. Mater., 2020, 8:1902124

    [56]

    Shrekenhamer D,Chen W C,Padilla W J. Phys. Rev. Lett., 2013, 110:177403

    [57]

    Wang L, Ge S J, Hu W et al. Opt. Express, 2017, 25:23873

    [58]

    Shen Z X, Zhou S H, Ge S J et al. Appl. Phys. Lett., 2019, 114:041106

    [59]

    Shen Z X, Zhou S H, Ge S J et al. Opt. Lett., 2018, 43:4695

    [60]

    Li W L, Hu X M, Wu J B et al. Light Sci. Appl., 2022, 11:191

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出版历程
  • 收稿日期:  2023-01-10
  • 网络出版日期:  2023-02-17
  • 发布日期:  2023-01-10

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