Acta Optica Sinica, Volume. 44, Issue 3, 0323001(2024)
Omnidirectional Dual-Function Terahertz Metasurface Device
[1] Li L, Zhang P, Han J Q et al. Key Technologies of microwave wireless power transfer and energy harvesting based on electromagnetic metamaterials[J]. Acta Photonica Sinica, 50, 1016001(2021).
[2] Gao X Y, Song Q H. Recent advances in orbital angular momentum multiplexed metasurface holography[J]. Chinese Journal of Lasers, 50, 1813011(2023).
[3] Luo Y, Wang W T, Zhao P J et al. Dual-mode metasurface of polarization-specific focusing and keeping wavefront[J]. Chinese Journal of Lasers, 47, 0301007(2020).
[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] Zhang L, Wu R Y, Bai G D et al. Multifunctional metasurfaces: transmission-reflection-integrated multifunctional coding metasurface for full-space controls of electromagnetic waves (adv. funct. mater. 33/2018)[J]. Advanced Functional Materials, 28, 1802205(2018).
[6] Zhang C B, Wang G M, Xu H X et al. Helicity-dependent multifunctional metasurfaces for full-space wave control[J]. Advanced Optical Materials, 8, 1901719(2020).
[7] Liu C X, Yang F, Fu X J et al. Programmable manipulations of terahertz beams by transmissive digital coding metasurfaces based on liquid crystals[J]. Advanced Optical Materials, 9, 2100932(2021).
[8] Dong Y J, Sun X Y, Li Y et al. Full-space terahertz metasurface based on thermally tunable InSb[J]. Journal of Physics D: Applied Physics, 55, 455105(2022).
[9] Ma H X, Pan G W, Yuan G L et al. A broadband vortex beam generator using graphene metasurface reflectarray in terahertz region[J]. Physica Scripta, 97, 125506(2022).
[10] Bai T R, Li Q, Wang Y Q et al. Terahertz vortex beam generator based on bound states in the continuum[J]. Optics Express, 29, 25270-25279(2021).
[11] Cheng K X, Hu Z D, Wang Y Q et al. High-performance terahertz vortex beam generator based on square-split-ring metasurfaces[J]. Optics Letters, 45, 6054-6057(2020).
[12] 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).
[13] Burch J, Ma J, Hunter R I et al. Flexible patches for mm-wave holography[J]. Applied Physics Letters, 115, 021104(2019).
[14] Feng H, Xu Z X, Li K et al. Tunable polarization-independent and angle-insensitive broadband terahertz absorber with graphene metamaterials[J]. Optics Express, 29, 7158-7167(2021).
[15] Liu W W, Xu J S, Song Z Y. Bifunctional terahertz modulator for beam steering and broadband absorption based on a hybrid structure of graphene and vanadium dioxide[J]. Optics Express, 29, 23331-23340(2021).
[16] Li Z W, Li J S. Switchable terahertz metasurface with polarization conversion and filtering functions[J]. Applied Optics, 60, 2450-2454(2021).
[17] Li J T, Li J, Zheng C L et al. Dynamic control of reflective chiral terahertz metasurface with a new application developing in full grayscale near field imaging[J]. Carbon, 172, 189-199(2021).
[18] 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).
[19] Zhao X L, Lou J, Xu X et al. Multifield controlled terahertz modulator based on silicon-vanadium dioxide hybrid metasurface[J]. Advanced Optical Materials, 10, 2102589(2022).
[20] Li J S, Yang L J. Transmission and reflection bi-direction terahertz encoding metasurface with a single structure[J]. Optics Express, 29, 33760-33770(2021).
[21] Wu R L, Li J S. Bi-directional multi-function terahertz metasurface[J]. Optics Communications, 529, 129105(2023).
[22] Xie R S, Gu Z, Zhang D J et al. High-efficiency full-space complex-amplitude metasurfaces enabled by a Bi-spectral single-substrate-layer meta-atom[J]. Advanced Optical Materials, 10, 2102084(2022).
[23] Yang Q L, Wang Y, Liang L J et al. Broadband transparent terahertz vortex beam generator based on thermally tunable geometric metasurface[J]. Optical Materials, 121, 111574(2021).
[24] Sun M K, Lv T S, Liu Z Y et al. VO2-enabled transmission-reflection switchable coding terahertz metamaterials[J]. Optics Express, 30, 28829-28839(2022).
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Lina Zhang, Jiusheng Li. Omnidirectional Dual-Function Terahertz Metasurface Device[J]. Acta Optica Sinica, 2024, 44(3): 0323001
Category: Optical Devices
Received: May. 16, 2023
Accepted: Oct. 7, 2023
Published Online: Feb. 21, 2024
The Author Email: Li Jiusheng (lijsh@cjlu.edu.cn)
CSTR:32393.14.AOS230993