Acta Optica Sinica, Volume. 43, Issue 11, 1124003(2023)
Multifunctional Reconfigurable Metasurface Based on Photosensitive Silicon
[1] Bao D, Shen X P, Cui T J. Progress of terahertz metamaterials[J]. Acta Physica Sinica, 64, 228701(2015).
[2] Yu S X, Liu H X, Li L. Design of near-field focused metasurface for high-efficient wireless power transfer with multifocus characteristics[J]. IEEE Transactions on Industrial Electronics, 66, 3993-4002(2019).
[3] Chen K, Feng Y J, Monticone F et al. A reconfigurable active Huygens' metalens[J]. Advanced Materials, 29, 1606422(2017).
[4] Fan Y X, Qian Y X, Yin S et al. Multi-band tunable terahertz bandpass filter based on vanadium dioxide hybrid metamaterial[J]. Materials Research Express, 6, 055809(2019).
[5] Liu W W, Dai Z J, Yang J et al. Ultrabroad and angle tunable THz filter based on multiplexed metallic bar resonators[J]. IEEE Photonics Technology Letters, 30, 2103-2106(2018).
[6] Masyukov M, Grebenchukov A N, Litvinov E A et al. Photo-tunable terahertz absorber based on intercalated few-layer graphene[J]. Journal of Optics, 22, 095105(2020).
[7] He Z D, Wu L W, Liu Y et al. Ultrawide bandwidth and large-angle electromagnetic wave absorption based on triple-nested helix metamaterial absorbers[J]. Journal of Applied Physics, 127, 174901(2020).
[8] Huang J X, Fu T, Li H O et al. A reconfigurable terahertz polarization converter based on metal-graphene hybrid metasurface[J]. Chinese Optics Letters, 18, 013102(2020).
[9] Wang H Y, Zhang Z Y, Zhao K et al. Independent phase manipulation of co- and cross-polarizations with all-dielectric metasurface[J]. Chinese Optics Letters, 19, 053601(2021).
[10] Zhou G C, Dai P H, Wu J B et al. Broadband and high modulation-depth THz modulator using low bias controlled VO2-integrated metasurface[J]. Optics Express, 25, 17322-17328(2017).
[11] Ma Z J, Hanham S M, Gong Y D et al. All-dielectric reflective half-wave plate metasurface based on the anisotropic excitation of electric and magnetic dipole resonances[J]. Optics Letters, 43, 911-914(2018).
[12] Yang L J, Li J S, Yan D X. Switchable multi-function device based on reconfiguration metasurface in terahertz region[J]. Optics Communications, 516, 128234(2022).
[13] Lin Z, Pestourie R, Roques-Carmes C et al. End-to-end metasurface inverse design for single-shot multi-channel imaging[J]. Optics Express, 30, 28358-28370(2022).
[14] Li H, Li Y B, Shen J L et al. Low-profile electromagnetic holography by using coding Fabry-Perot type metasurface with in-plane feeding[J]. Advanced Optical Materials, 8, 1902057(2020).
[15] Huang J, Li J N, Yang Y et al. Active controllable dual broadband terahertz absorber based on hybrid metamaterials with vanadium dioxide[J]. Optics Express, 28, 7018-7027(2020).
[16] Yang Z H, Jiang M Z, Liu Y C et al. Tunable-bandwidth terahertz polarization converter based on a vanadium dioxide hybrid metasurface[J]. Chinese Journal of Lasers, 48, 1714001(2021).
[17] Yang S, Yuan S, Wang J Y. Light-excited and switchable dual-band terahertz metamaterial absorber[J]. Acta Optica Sinica, 41, 0216001(2021).
[18] Qu M J, Chang T Y, Guo G et al. Design of graphene-based dual-polarized switchable rasorber/absorber at terahertz[J]. IEEE Access, 8, 127220-127225(2020).
[19] Yang S, Wang J Y, Zhang T et al. Temperature-voltage bi-controllable broadband terahertz polarization conversion/absorption metasurface[J]. Acta Optica Sinica, 42, 0824001(2022).
[20] He B, Fan J P, Cheng Y et al. Thermally tunable terahertz vortex beam generator based on an InSb metasurface[J]. Journal of the Optical Society of America B, 38, 1518-1524(2021).
[21] Cheng Y Z, Liu J Q, Chen F et al. Optically switchable broadband metasurface absorber based on square ring shaped photoconductive silicon for terahertz waves[J]. Physics Letters A, 402, 127345(2021).
[22] Cheng Y Z, Gong R Z, Zhao J C. A photoexcited switchable perfect metamaterial absorber/reflector with polarization-independent and wide-angle for terahertz waves[J]. Optical Materials, 62, 28-33(2016).
[23] Murtaza M, Rashid A, Tahir F A. A highly efficient low-cost reflective anisotropic metasurface for linear to linearly cross- and circular-polarization conversion[J]. Microwave and Optical Technology Letters, 63, 1346-1353(2021).
[24] Cong L Q, Xu N N, Gu J Q et al. Highly flexible broadband terahertz metamaterial quarter-wave plate[J]. Laser & Photonics Reviews, 8, 626-632(2014).
[25] He J W, Xie Z W, Wang S et al. Terahertz polarization modulator based on metasurface[J]. Journal of Optics, 17, 105107(2015).
[26] Qiao Q, Wang Y K, Yang G F et al. Broadband of linear-to-linear and double-band of linear-to-circular polarization converter based on a graphene sheet with a π-shaped hollow array[J]. Optical Materials Express, 11, 2952-2965(2021).
[27] Li Y, Li H Y, Wang Y W et al. A novel switchable absorber/linear converter based on active metasurface and its application[J]. IEEE Transactions on Antennas and Propagation, 68, 7688-7693(2020).
[28] He J H, Wang S Q, Li X W et al. A broadband reconfigurable linear-to-circular polarizer/reflector based on PIN diodes[J]. Physica Scripta, 96, 125846(2021).
[29] Wang S Z, Liu H Q, Tang J et al. Tunable and switchable bifunctional meta-surface for plasmon-induced transparency and perfect absorption[J]. Optical Materials Express, 12, 560-572(2022).
[30] Yang L J, Li J S. Full-space terahertz regulation metasurface[J]. Optical Engineering, 61, 047105(2022).
Get Citation
Copy Citation Text
Jiahui Ren, Jiusheng Li. Multifunctional Reconfigurable Metasurface Based on Photosensitive Silicon[J]. Acta Optica Sinica, 2023, 43(11): 1124003
Category: Optics at Surfaces
Received: Nov. 30, 2022
Accepted: Feb. 9, 2023
Published Online: Jun. 13, 2023
The Author Email: Li Jiusheng (lijsh@cjlu.edu.cn)