Chinese Journal of Lasers, Volume. 49, Issue 3, 0314001(2022)
Dynamic Manipulation of Terahertz Wave Phase Based on Vanadium Dioxide Metamaterials
[1] Tonouchi M. Cutting-edge terahertz technology[J]. Nature Photonics, 1, 97-105(2007).
[2] Rappaport T S, Xing Y C, Kanhere O et al. Wireless communications and applications above 100 GHz: opportunities and challenges for 6G and beyond[J]. IEEE Access, 7, 78729-78757(2019).
[3] Chen Z, Zhang B, Zhang Y et al. 220 GHz outdoor wireless communication system based on a Schottky-diode transceiver[J]. IEICE Electronics Express, 13, 20160282(2016).
[4] Cai Y J, Xu K D, Feng N X et al. Anisotropic infrared plasmonic broadband absorber based on graphene-black phosphorus multilayers[J]. Optics Express, 27, 3101-3112(2019).
[5] Landy N I, Bingham C M, Tyler T et al. Design, theory, and measurement of a polarization-insensitive absorber for terahertz imaging[J]. Physical Review B, 79, 125104(2009).
[6] Li D M, Yuan S, Yang R C et al. Dynamical optical-controlled multi-state THz metamaterial absorber[J]. Acta Optica Sinica, 40, 0816001(2020).
[7] Song Z, Wang K, Li J et al. Broadband tunable terahertz absorber based on vanadium dioxide metamaterials[J]. Optics Express, 26, 7148-7154(2018).
[8] Zhu D W, Zeng R M, Tang Z T et al. Design of multiband filter based on spoof surface plasmon polaritons[J]. Laser & Optoelectronics Progress, 57, 172401(2020).
[9] Gao W, Wang J Y, Wu Q N. Design and investigation of a metamaterial terahertz broadband bandpass filter based on dual metallic rings[J]. Laser & Optoelectronics Progress, 58, 0516001(2021).
[10] Manceau J M, Shen N H, Kafesaki M et al. Dynamic response of metamaterials in the terahertz regime: blueshift tunability and broadband phase modulation[J]. Applied Physics Letters, 96, 021111(2010).
[11] Urade Y, Nakata Y, Okimura K et al. Dynamically Babinet-invertible metasurface: a capacitive-inductive reconfigurable filter for terahertz waves using vanadium-dioxide metal-insulator transition[J]. Optics Express, 24, 4405-4410(2016).
[12] Peralta X G, Smirnova E I, AzadA K et al. Metamaterials for THz polarimetric devices[J]. Optics Express, 17, 773-783(2009).
[13] Chen H T, Padilla W J, Cich M J et al. A metamaterial solid-state terahertz phase modulator[J]. Nature Photonics, 3, 148-151(2009).
[14] Yuan Y H, Chen X Y, Hu F R et al. Terahertz amplitude modulator based on metasurface/ion-gel/graphene hybrid structure[J]. Chinese Journal of Lasers, 46, 0614016(2019).
[15] Liu P Q, Luxmoore I J, Mikhailov S A et al. Highly tunable hybrid metamaterials employing split-ring resonators strongly coupled to graphene surface plasmons[J]. Nature Communications, 6, 8969(2015).
[16] Driscoll T, Kim H T, Chae B G et al. Memory metamaterials[J]. Science, 325, 1518-1521(2009).
[17] Zhang K, Zhang L, Duan D et al. Wide band terahertz switch of undulated waveguide with VO2 film coated inner wall[J]. Journal of Lightwave Technology, 36, 4401-4407(2018).
[18] Leroy J, Crunteanu A, Bessaudou A et al. High-speed metal-insulator transition in vanadium dioxide films induced by an electrical pulsed voltage over nano-gap electrodes[J]. Applied Physics Letters, 100, 213507(2012).
[19] Zhao Y C, Zhang Y X, Shi Q W et al. Dynamic photoinduced controlling of the large phase shift of terahertz waves via vanadium dioxide coupling nanostructures[J]. ACS Photonics, 5, 3040-3050(2018).
[20] Zhang Z J, Yang J B, Han Y X et al. Actively tunable terahertz electromagnetically induced transparency analogue based on vanadium-oxide-assisted metamaterials[J]. Applied Physics A, 126, 1-11(2020).
[21] Papasimakis N, Fedotov V A, Savinov V et al. Electromagnetic toroidal excitations in matter and free space[J]. Nature Materials, 15, 263-271(2016).
[22] Stefanovich G, Pergament A, Stefanovich D. Electrical switching and Mott transition in VO2[J]. Journal of Physics: Condensed Matter, 12, 8837-8845(2000).
[23] Cavalleri A, Tóth C, Siders C W et al. Femtosecond structural dynamics in VO2 during an ultrafast solid-solid phase transition[J]. Physical Review Letters, 87, 237401(2001).
[24] Huang Y W, Chen W T, Wu P C et al. Design of plasmonic toroidal metamaterials at optical frequencies[J]. Optics Express, 20, 1760-1768(2012).
[25] Guo L Y. Toroidal dipolar metamaterials and their characteristics[D](2016).
Get Citation
Copy Citation Text
Qi Cui, Zhe Chen, Yan Wang. Dynamic Manipulation of Terahertz Wave Phase Based on Vanadium Dioxide Metamaterials[J]. Chinese Journal of Lasers, 2022, 49(3): 0314001
Category: terahertz technology
Received: May. 8, 2021
Accepted: Jun. 30, 2021
Published Online: Jan. 18, 2022
The Author Email: Chen Zhe (zhechen@ynu.edu.cn)