• Chinese Physics B
  • Vol. 29, Issue 9, (2020)
Jing-Yuan Wu1, Xiao-Feng Xu1, and Lian-Fu Wei1、2、†
Author Affiliations
  • 1Photonics Laboratory and Institute of Functional Materials, College of Science, Donghua University, Shanghai 20620, China
  • 2Information Quantum Technology Laboratory, School of Information Science and Technology, Southwest Jiaotong University, Chengdu 610031, China
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    DOI: 10.1088/1674-1056/aba613 Cite this Article
    Jing-Yuan Wu, Xiao-Feng Xu, Lian-Fu Wei. Active metasurfaces for manipulatable terahertz technology[J]. Chinese Physics B, 2020, 29(9): Copy Citation Text show less
    References

    [1] M Tonouchi. Nat. Photon, 1, 97(2007).

    [2] M Rahm, J S Li, W J Padilla. J. Infrared, Millimeter, Terahertz Waves, 34, 1(2013).

    [3] S Koenig, D Lopez-Diaz, J Antes, F Boes, R Henneberger, A Leuther, A Tessmann, R Schmogrow, D Hillerkuss, R Palmer, T Zwick, C Koos, W Freude, O Ambacher, J Leuthold, I Kallfass. Nat. Photon, 7, 977(2013).

    [4] C G Wade, N Šibali, N R De Melo, J M Kondo, C S Adams, K J Weatherill. Nat. Photon, 11, 40(2017).

    [5] T Zhou, R Zhang, C Yao, Z L Fu, D X Shao, J C Cao. Chin. Phys. Lett, 34(2017).

    [6] A Li, S Singh, D Sievenpiper. Nanophotonics, 7, 989(2018).

    [7] Q He, S Sun, L Zhou. Research, 2019(2019).

    [8] S B Glybovski, S A Tretyakov, P A Belov, Y S Kivshar, C R Simovski. Phys. Rep, 634, 1(2016).

    [9] D Su, X Y Zhang, Y L Ma, F Shan, J Y Wu, X C Fu, L J Zhang, K Q Yuan, T Zhang. IEEE Photon. J, 10(2018).

    [10] X Zhang, Z Tian, W Yue, J Gu, S Zhang, J Han, W Zhang. Adv. Mater, 25, 4567(2013).

    [11] N Yu, F Capasso. Nat. Mater, 13, 139(2014).

    [12] L Sun, Z Zhou, J Zhong, Z Shi, Y Mao, H Li, J Cao, T H Tao. Small, 16(2020).

    [13] J Li, Y Yang, J Li, Y Zhang, Z Zhang, H Zhao, F Li, T Tang, H Dai, J Yao. Adv. Theory Simulations, 3(2020).

    [14] M A Seo, H R Park, S M Koo, D J Park, J H Kang, O K Suwal, S S Choi, P C M Planken, G S Park, N K Park, Q H Park, D S Kim. Nat. Photon, 3, 152(2009).

    [15] B Luk’Yanchuk, N I Zheludev, S A Maier, N J Halas, P Nordlander, H Giessen, C T Chong. Nat. Mater, 9, 707(2010).

    [16] H Tao, A C Strikwerda, K Fan, W J Padilla, X Zhang, R D Averitt. Phys. Rev. Lett, 103(2009).

    [17] J Y Ou, E Plum, L Jiang, N I Zheludev. Nano Lett, 11, 2142(2011).

    [18] Y H Fu, A Q Liu, W M Zhu, X M Zhang, D P Tsai, J B Zhang, T Mei, J F Tao, H C Guo, X H Zhang, J H Teng, N I Zheludev, G Q Lo, D L Kwong. Adv. Funct. Mater, 21, 3589(2011).

    [19] L Cong, P Pitchappa, C Lee, R Singh. Adv. Mater, 29(2017).

    [20] I E Khodasevych, C M Shah, S Sriram, M Bhaskaran, W Withayachumnankul, B S Y Ung, H Lin, W S T Rowe, D Abbott, A Mitchell. Appl. Phys. Lett, 100(2012).

    [21] F Ma, Y S Lin, X Zhang, C Lee. Light: Sci. Appl, 3, e171(2014).

    [22] A M Shaltout, V M Shalaev, M L Brongersma. Science, 364(2019).

    [23] T Cui, B Bai, H B Sun. Adv. Funct. Mater, 29(2019).

    [24] L Wang, Y Zhang, X Guo, T Chen, H Liang, X Hao, X Hou, W Kou, Y Zhao, T Zhou, S Liang, Z Yang. Nanomaterials, 9, 965(2019).

    [25] H T Chen, W J Padilla, J M O Zide, A C Gossard, A J Taylor, R D Averitt. Nature, 444, 597(2006).

    [26] H T Chen, W J Padilla, M J Cich, A K Azad, R D Averitt, A J Taylor. Nat. Photon, 3, 148(2009).

    [27] Y Zhang, S Qiao, S Liang, Z Wu, Z Yang, Z Feng, H Sun, Y Zhou, L Sun, Z Chen, X Zou, B Zhang, J Hu, S Li, Q Chen, L Li, G Xu, Y Zhao, S Liu. Nano Lett, 15, 3501(2015).

    [28] M R Shcherbakov, S Liu, V V Zubyuk, A Vaskin, P P Vabishchevich, G Keeler, T Pertsch, T V Dolgova, I Staude, I Brener, A A Fedyanin. Nat. Commun, 8, 17(2017).

    [29] L L Du, Q Li, S X Li, F R Hu, X M Xiong, Y F Li, W T Zhang, J G Han. Chin. Phys. B, 25(2016).

    [30] P Gopalan, B Sensale-Rodriguez. Adv. Opt. Mater, 8(2020).

    [31] Y T Zhao, B Wu, B J Huang, Q Cheng. Opt. Express, 25, 7161(2017).

    [32] S F Shi, B Zeng, H L Han, X Hong, H Z Tsai, H S Jung, A Zettl. Nano Lett, 15, 372(2015).

    [33] M Seo, J Kyoung, H Park, S Koo, H S Kim, H Bernien, B J Kim, J H Choe, Y H Ahn, H T Kim, N Park, Q H Park, K Ahn, D S Kim. Nano Lett, 10, 2064(2010).

    [34] S Zhao, F Hu, X Xu, M Jiang, W Zhang, S Yin, W Jiang. Chin. Phys. B, 28(2019).

    [35] H F Zhu, L H Du, J Li, Q W Shi, B Peng, Z R Li, W X Huang, L G Zhu. Appl. Phys. Lett, 112(2018).

    [36] Z Song, K Wang, J Li, Q H Liu. Opt. Express, 26, 7148(2018).

    [37] E P J Parrott, C Han, F Yan, G Humbert, A Bessaudou, A Crunteanu, E Pickwell-MacPherson. Nanotechnology, 27(2016).

    [38] G Scalari, C Maissen, S Cibella, R Leoni, J Faist. Appl. Phys. Lett, 105(2014).

    [39] J Keller, G Scalari, F Appugliese, E Mavrona, S Rajabali, M J Süess, M Beck, J Faist. ACS Photon, 5, 3977(2018).

    [40] S Yu, X Wu, Y Wang, X Guo, L Tong. Adv. Mater, 29(2017).

    [41] E Alvear-Cabezón, R Smaali, E Centeno, F Gonzalez-Posada, T Taliercio. Phys. Rev. B, 98(2018).

    [42] Z F Fan, Z Y Tan, W J Wan, X Xin, X Lin, Z M Jin, J C Cao, G H Ma. Acta Phys. Sin, 66(2017).

    [43] J Gu, R Singh, X Liu, X Zhang, Y Ma, S Zhang, S A Maier, Z Tian, A K Azad, H T Chen, A J Taylor, J Han, W Zhang. Nat. Commun, 3, 1151(2012).

    [44] H Cai, Q Huang, X Hu, Y Liu, Z Fu, Y Zhao, H He, Y Lu. Adv. Opt. Mater, 6(2018).

    [45] N Kamaraju, A Rubano, L Jian, S Saha, T Venkatesan, J Nötzold, R Kramer Campen, M Wolf, T Kampfrath. Light: Sci. Appl, 3, e155(2014).

    [46] Y Yang, N Kamaraju, S Campione, S Liu, J L Reno, M B Sinclair, R P Prasankumar, I Brener. ACS Photon, 4, 15(2017).

    [47] S Xiao, T Wang, T Liu, X Yan, Z Li, C Xu. Carbon, 126, 271(2018).

    [48] G Fiori, F Bonaccorso, G Iannaccone, T Palacios, D Neumaier, A Seabaugh, S K Banerjee, L Colombo. Nat. Nanotechnol, 9, 768(2014).

    [49] Q H Wang, K Kalantar-Zadeh, A Kis, J N Coleman, M S Strano. Nat. Nanotechnol, 7, 699(2012).

    [50] A Kuc, N Zibouche, T Heine. Phys. Rev. B, 83(2011).

    [51] Y Wang, J C Kim, R J Wu, J Martinez, X Song, J Yang, F Zhao, A Mkhoyan, H Y Jeong, M Chhowalla. Nature, 568, 70(2019).

    [52] X Ma, R Zhang, C An, S Wu, X Hu, J Liu. Chin. Phys. B, 28(2019).

    [53] D S Schulman, A J Arnold, S Das. Chem. Soc. Rev, 47, 3037(2018).

    [54] A Allain, J Kang, K Banerjee, A Kis. Nat. Mater, 14, 1195(2015).

    [55] K S Novoselov, A K Geim, S V Morozov, D Jiang, Y Zhang, S V Dubonos, I V Grigorieva, A A Firsov. Science, 306, 666(2004).

    [56] F Schwierz. Nat. Nanotechnol, 5, 487(2012).

    [57] A K Geim. Science, 324, 1530(2009).

    [58] X Wang, X Gan. Chin. Phys. B, 26(2017).

    [59] A H C Neto, F Guinea, N M R Peres, K S Novoselov, A K Geim. Rev. Mod. Phys, 81, 109(2009).

    [60] F Wang, Z Wang, C Jiang, L Yin, R Cheng, X Zhan, K Xu, F Wang, Y Zhang, J He. Small, 13(2017).

    [61] F H L Koppens, T Mueller, P Avouris, A C Ferrari, M S Vitiello, M Polini. Nat. Nanotechnol, 9, 780(2014).

    [62] Q Bao, K P Loh. ACS Nano, 6, 3677(2012).

    [63] T Low, P Avouris. ACS Nano, 8, 1086(2014).

    [64] F J G De Abajo. ACS Photon, 1, 135(2014).

    [65] M Jablan, H Buljan, M Soljačić. Phys. Rev. B, 80(2009).

    [66] F H L Koppens, D E Chang, F J García De Abajo. Nano Lett, 11, 3370(2011).

    [67] J Y Wu, Y T Chun, S Li, T Zhang, J Wang, P K Shrestha, D Chu. Adv. Mater, 30(2018).

    [68] J Y Wu, Y T Chun, S Li, T Zhang, D Chu. ACS Appl. Mater. Interfaces, 10(2018).

    [69] C H Lui, A J Frenzel, D V Pilon, Y H Lee, X Ling, G M Akselrod, J Kong, N Gedik. Phys. Rev. Lett, 113(2014).

    [70] C J Docherty, P Parkinson, H J Joyce, M H Chiu, C H Chen, M Y Lee, L J Li, L M Herz, M B Johnston. ACS Nano, 8(2014).

    [71] S Kar, Y Su, R R Nair, A K Sood. ACS Nano, 9(2015).

    [72] S H Lee, M Choi, T T Kim, S Lee, M Liu, X Yin, H K Choi, S S Lee, C G Choi, S Y Choi, X Zhang, B Min. Nat. Mater, 11, 936(2012).

    [73] Z Miao, Q Wu, X Li, Q He, K Ding, Z An, Y Zhang, L Zhou. Phys. Rev. X, 5(2015).

    [74] Y Zhao, X Xiao, Y Huo, Y Wang, T Zhang, K Jiang, J Wang, S Fan, Q Li. ACS Appl. Mater. Interfaces, 9(2017).

    [75] T T Kim, S Soon Oh, H D Kim, H Sung Park, O Hess, B Min, S Zhang. Sci. Adv, 3(2017).

    [76] S J Kindness, N W Almond, B Wei, R Wallis, W Michailow, V S Kamboj, P Braeuninger-Weimer, S Hofmann, H E Beere, D A Ritchie, R Degl’Innocenti. Adv. Opt. Mater, 6(2018).

    [77] V S Yadav, S K Ghosh, S Bhattacharyya, S Das. Appl. Opt, 57, 8720(2018).

    [78] M Zhang, X X Wang, W Q Cao, J Yuan, M S Cao. Adv. Opt. Mater, 7(2019).

    [79] S Ryu, J Maultzsch, M Y Han, P Kim, L E Brus. ACS Nano, 5, 4123(2011).

    [80] X Liang, Y S Jung, S Wu, A Ismach, D L Olynick, S Cabrini, J Bokor. Nano Lett, 10, 2454(2010).

    [81] J Li, S Sollami Delekta, P Zhang, S Yang, M R Lohe, X Zhuang, X Feng, M Östling. ACS Nano, 11, 8249(2017).

    [82] H Minemawari, T Yamada, H Matsui, J Y Tsutsumi, S Haas, R Chiba, R Kumai, T Hasegawa. Nature, 475, 364(2011).

    [83] K Yu, P Wang, G Lu, K H Chen, Z Bo, J Chen. J. Phys. Chem. Lett, 2, 537(2011).

    [84] K S Kim, Y Zhao, H Jang, S Y Lee, J M Kim, K S Kim, J H Ahn, P Kim, J Y Choi, B H Hong. Nature, 457, 706(2009).

    [85] L Camilli, J H Jørgensen, J Tersoff, A C Stoot, R Balog, A Cassidy, J T Sadowski, P Bøggild, L Hornekær. Nat. Commun, 8, 47(2017).

    [86] T Yatooshi, A Ishikawa, K Tsuruta. Appl. Phys. Lett, 107(2015).

    [87] X Zhu, W Wang, W Yan, M B Larsen, P Bøggild, T G Pedersen, S Xiao, J Zi, N A Mortensen. Nano Lett, 14, 2907(2014).

    [88] S Thongrattanasiri, F H L Koppens, F J García De Abajo. Phys. Rev. Lett, 108(2012).

    [89] Z Fang, Y Wang, A E Schlather, Z Liu, P M Ajayan, F J García De Abajo, P Nordlander, X Zhu, N J Halas. Nano Lett, 14, 299(2014).

    [90] P A Huidobro, M Kraft, S A Maier, J B Pendry. ACS Nano, 10, 5499(2016).

    [91] D S Jessop, S J Kindness, L Xiao, P Braeuninger-Weimer, H Lin, Y Ren, C X Ren, S Hofmann, J A Zeitler, H E Beere, D A Ritchie, R Degl’Innocenti. Appl. Phys. Lett, 108(2016).

    [92] A Majumdar, J Kim, J Vuckovic, F Wang. Nano Lett, 13, 515(2013).

    [93] F Shan, X Y Zhang, J Y Wu, T Zhang. Chin. Phys. B, 27(2018).

    [94] P Q Liu, I J Luxmoore, S A Mikhailov, N A Savostianova, F Valmorra, J Faist, G R Nash. Nat. Commun, 6, 8969(2015).

    [95] J Y Wu, X Y Zhang, X D Ma, Y P Qiu, T Zhang. RSC Adv, 5(2015).

    [96] Y K Srivastava, A Chaturvedi, M Manjappa, A Kumar, G Dayal, C Kloc, R Singh. Adv. Opt. Mater, 5(2017).

    [97] Y Hu, T Jiang, J Zhou, H Hao, H Sun, H Ouyang, M Tong, Y Tang, H Li, J You, X Zheng, Z Xu, X Cheng. Nano Energy, 68(2020).

    [98] D M Finlayson. Philos. Mag. Lett, 61, 293(1990).

    [99] D Adler. Rev. Mod. Phys, 40, 714(1968).

    [100] F J Morin. Phys. Rev. Lett, 3, 34(1959).

    [101] X He, T Xu, X Xu, Y Zeng, J Xu, L Sun, C Wang, H Xing, B Wu, A Lu, D Liu, X Chen, J Chu. Sci. Rep, 4, 6544(2014).

    [102] D Guo, C Hu, Q Yang, H Hua, W Li, C Kong. Mater. Res. Bull, 53, 102(2014).

    [103] X He, J Xu, X Xu, C Gu, F Chen, B Wu, C Wang, H Xing, X Chen, J Chu. Appl. Phys. Lett, 106(2015).

    [104] Y G Jeong, Y M Bahk, D S Kim. Adv. Opt. Mater, 8(2020).

    [105] B H Wu, X F Xu, C R Wang. Opt. Lett, 41, 5768(2016).

    [106] H Liu, J Lu, X R Wang. Nanotechnology, 29(2018).

    [107] M Liu, H Y Hwang, H Tao, A C Strikwerda, K Fan, G R Keiser, A J Sternbach, K G West, S Kittiwatanakul, J Lu, S A Wolf, F G Omenetto, X Zhang, K A Nelson, R D Averitt. Nature, 487, 345(2012).

    [108] Z J Thompson, A Stickel, Y G Jeong, S Han, B H Son, M J Paul, B Lee, A Mousavian, G Seo, H T Kim, Y S Lee, D S Kim. Nano Lett, 15, 5893(2015).

    [109] A X Gray, M C Hoffmann, J Jeong et al. Phys. Rev. B, 98(2018).

    [110] K Liu, S Lee, S Yang, O Delaire, J Wu. Mater. Today, 21, 875(2018).

    [111] P Pitchappa, A Kumar, S Prakash, H Jani, T Venkatesan, R Singh. Adv. Mater, 31(2019).

    [112] W W Li, J J Zhu, X F Xu, K Jiang, Z G Hu, M Zhu, J H Chu. J. Appl. Phys, 110(2011).

    [113] J Sang, P Wang, Y Meng, X Xu, J L Sun, Y Wang, Z Hua, T Zheng, Z Liu, C Wang, B Wu, X Chen. Jpn. J. Appl. Phys, 58(2019).

    [114] Y Meng, J Sang, Z Liu, X Xu, Z Tan, C Wang, B Wu, C Wang, J Cao, X Chen. Appl. Surf. Sci, 470, 168(2019).

    [115] H Wang, J Jian, W Zhang, C Jacob, A Chen, H Wang, J Huang. Appl. Phys. Lett, 107(2015).

    [116] A P Peter, K Martens, G Rampelberg, M Toeller, J M Ablett, J Meersschaut, D Cuypers, A Franquet, C Detavernier, J P Rueff, M Schaekers, S Van Elshocht, M Jurczak, C Adelmann, I P Radu. Adv. Funct. Mater, 25, 679(2015).

    [117] D Wang, L Zhang, Y Gu, M Q Mehmood, Y Gong, A Srivastava, L Jian, T Venkatesan, C W Qiu, M Hong. Sci. Rep, 5(2015).

    [118] Y G Jeong, S Han, J Rhie, J S Kyoung, J W Choi, N Park, S Hong, B J Kim, H T Kim, D S Kim. Nano Lett, 15, 6318(2015).

    [119] G Zhou, P Dai, J Wu, B Jin, Q Wen, G Zhu, Z Shen, C Zhang, L Kang, W Xu, J Chen, P Wu. Opt. Express, 25(2017).

    [120] T Wang, J He, J Guo, X Wang, S Feng, F Kuhl, M Becker, A Polity, P J Klar, Y Zhang. Opt. Express, 27(2019).

    [121] F Ding, S Zhong, S I Bozhevolnyi. Adv. Opt. Mater, 6(2018).

    [122] Q Y Wen, H W Zhang, Q H Yang, Y S Xie, K Chen, Y L Liu. Appl. Phys. Lett, 97(2010).

    [123] Y Zhao, Y Zhang, Q Shi, S Liang, W Huang, W Kou, Z Yang. ACS Photon, 5, 3040(2018).

    [124] H Cai, S Chen, C Zou, Q Huang, Y Liu, X Hu, Z Fu, Y Zhao, H He, Y Lu. Adv. Opt. Mater, 6(2018).

    [125] Y Zhang, S Qiao, L Sun, Q W Shi, W Huang, L Li, Z Yang. Opt. Express, 22(2014).

    [126] L Liu, L Kang, T S Mayer, D H Werner. Nat. Commun, 7(2016).

    [127] J Rensberg, S Zhang, Y Zhou, A S McLeod, C Schwarz, M Goldflam, M Liu, J Kerbusch, R Nawrodt, S Ramanathan, D N Basov, F Capasso, C Ronning, M A Kats. Nano Lett, 16, 1050(2016).

    [128] O L Muskens, L Bergamini, Y Wang, J M Gaskell, N Zabala, C H De Groot, D W Sheel, J Aizpurua. Light: Sci. Appl, 5(2016).

    [129] D Y Lei, K Appavoo, F Ligmajer, Y Sonnefraud, R F Haglund, S A Maier. ACS Photon, 2, 1306(2015).

    [130] B X Wang, G Z Wang. IEEE Photon. J, 8(2016).

    [131] S M Anlage. J. Opt, 13(2011).

    [132] B Jin, C Zhang, S Engelbrecht, A Pimenov, J Wu, Q Xu, C Cao, J Chen, W Xu, L Kang, P Wu. Opt. Express, 18(2010).

    [133] C Zhang, B Jin, J Han, I Kawayama, H Murakami, J Wu, L Kang, J Chen, P Wu, M Tonouchi. Appl. Phys. Lett, 102(2013).

    [134] C Li, C Zhang, G Hu, G Zhou, S Jiang, C Jiang, G Zhu, B Jin, L Kang, W Xu, J Chen, P Wu. Appl. Phys. Lett, 109(2016).

    [135] J Gu, R Singh, Z Tian, W Cao, Q Xing, M He, J W Zhang, J Han, H T Chen, W Zhang. Appl. Phys. Lett, 97(2010).

    [136] P Jung, A V Ustinov, S M Anlage. Supercond. Sci. Technol, 27(2014).

    [137] Y K Srivastava, R Singh. J. Appl. Phys, 122(2017).

    [138] C H Zhang, J B Wu, B B Jin, Z M Ji, L Kang, W W Xu, J Chen, M Tonouchi, P Wu. Opt. Express, 20, 42(2012).

    [139] X Liu, W Guo, Y Wang, M Dai, L F Wei, B Dober, C M McKenney, G C Hilton, J Hubmayr, J E Austermann, J N Ullom, J Gao, M R Vissers. Appl. Phys. Lett, 111(2017).

    [140] W Guo, X Liu, Y Wang, Q Wei, L F Wei, J Hubmayr, J Fowler, J Ullom, L Vale, M R Vissers, J Gao. Appl. Phys. Lett, 110(2017).

    [141] J Wu, B Jin, Y Xue, C Zhang, H Dai, L Zhang, C Cao, L Kang, W Xu, J Chen, P Wu. Opt. Express, 19(2011).

    [142] H T Chen, H Yang, R Singh, J F O’Hara, A K Azad, S A Trugman, Q X Jia, A J Taylor. Phys. Rev. Lett, 105(2010).

    [143] J Wu, B Jin, J Wan, L Liang, Y Zhang, T Jia, C Cao, L Kang, W Xu, J Chen, P Wu. Appl. Phys. Lett, 99(2011).

    [144] Y K Srivastava, M Manjappa, L Cong, H N S Krishnamoorthy, V Savinov, P Pitchappa, R Singh. Adv. Mater, 30(2018).

    [145] C Li, J Wu, S Jiang, R Su, C Zhang, C Jiang, G Zhou, B Jin, L Kang, W Xu, J Chen, P Wu. Appl. Phys. Lett, 111(2017).

    [146] N K Grady, B G Perkins, H Y Hwang, N C Brandt, D Torchinsky, R Singh, L Yan, D Trugman, S A Trugman, Q X Jia, A J Taylor, K A Nelson, H T Chen. New J. Phys, 15(2013).

    [147] M M Müller, B Maier, C Rockstuhl, M Hochbruck. Phys. Rev. B, 99(2019).

    [148] Y K Srivastava. Superconductor Terahertz metamaterials(2018).

    [149] T Stav, A Faerman, E Maguid, D Oren, V Kleiner, E Hasman, M Segev. Science, 361, 1101(2018).

    [150] Y Ming, W Zhang, J Tang, Y Liu, Z Xia, Y Liu, Y Q Lu. Laser Photonics Rev, 14(2020).

    [151] F Fan, S Chen, S J Chang. IEEE J. Sel. Top. Quantum Electron, 23(2017).

    [152] V I Belotelov, L E Kreilkamp, I A Akimov, A N Kalish, D A Bykov, S Kasture, V J Yallapragada, A V Gopal, A M Grishin, S I Khartsev, M Nur-E-Alam, M Vasiliev, L L Doskolovich, D R Yakovlev, K Alameh, A K Zvezdin, M Bayer. Nat. Commun, 4, 2128(2013).

    [153] I Zubritskaya, N Maccaferri, X Inchausti Ezeiza, P Vavassori, A Dmitriev. Nano Lett, 18, 302(2018).

    [154] R Shimano, G Yumoto, J Y Yoo, R Matsunaga, S Tanabe, H Hibino, T Morimoto, H Aoki. Nat. Commun, 4, 1841(2013).

    [155] S Chen, F Fan, X Wang, P Wu, H Zhang, S Chang. Opt. Express, 23, 1015(2015).

    [156] S Chen, F Fan, X He, M Chen, S Chang. Appl. Opt, 54, 9177(2015).

    [157] A Ottomaniello, S Zanotto, L Baldacci, A Pitanti, F Bianco, A Tredicucci. Opt. Express, 26, 3328(2018).

    [158] C M Watts, D Shrekenhamer, J Montoya, G Lipworth, J Hunt, T Sleasman, S Krishna, D R Smith, W J Padilla. Nat. Photon, 8, 605(2014).

    [159] L Bao, T J Cui. Microw. Opt. Technol. Lett, 62, 9(2020).

    [160] D Sun, J W Lai, J C Ma, Q S Wang, J Liu. Chin. Phys. B, 26(2017).

    [161] M R Shcherbakov, F Eilenberger, I Staude. J. Appl. Phys, 126(2019).

    [162] N Jiang, X Zhuo, J Wang. Chem. Rev, 118, 3054(2018).

    [163] R Bekenstein, I Pikovski, H Pichler, E Shahmoon, S F Yelin, M D Lukin. Nat. Phys, 16, 676(2020).

    Jing-Yuan Wu, Xiao-Feng Xu, Lian-Fu Wei. Active metasurfaces for manipulatable terahertz technology[J]. Chinese Physics B, 2020, 29(9):
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