正在加载图片...
光学仪器 第41卷 absorption in the broad solar spectrum with Bi2Te3 Graphene-based perfect optical absorbers harnessing metamaterials([C]Advanced Photonics guided mode resonances]. Optics Express, 2015 2017. New Orleans. Louisiana. United States: OSA 23(16):21032-21042. 017 [26] ZHANG S, WANG Y F, WANG S H, et al. [21] CHOWDHURY DR, SINGH R, O HARA J F, et al Wavelength-tunable perfect absorber based on guided Dynamically reconfigurable terahertz metamaterial mode resonances[J]. Applied Optics, 2016, 55(12) through photo-doped semiconductor[. Applied 3176-3181 Physics Letters, 2011, 99(23): 231101 [27] NAIRR R, BLAKE P, GRIGORENKO A N, et al. [22] ZHU J, HAN J G. TIAN Z et al. Thermal broadband Fine structure constant defines visual transparency tunable terahertz metamaterials]. Optics graphene[]. Science, 2008, 320(5881): 1308 Communications,2011,284(12):3129-3133 [28] GRANDE M. VINCENTI MA, STOMEO T et al. [23] DU KK, LI Q, ZHANG W C, et al. Wavelength an Graphene-based absorber exploiting guided mode thermal distribution selectable microbolometers based resonances in one-dimensional gratings[J]. Optics on metamaterial absorbers []. IEEE Photonics Journal, Express,2014,22(25):3151l-31519 2015,7(3):6800908 [29] WANG X, MA Q, WU L M, et al. Tunable [24] RAETHER H. Surface plasmons[M]//HOHLER G Springer tracts in modern physics. Berlin: Springer monolayer black phosphorusp]. Optics Express, 2018 26(5):5488-5496 25 GRANDE M, VINCENTI M A, STOMEO T, et al (编辑:张磊)absorption in the broad solar spectrum with Bi2Te3 hyperbolic metamaterials[C]//Advanced Photonics 2017. New Orleans, Louisiana, United States: OSA, 2017. CHOWDHURY D R, SINGH R, O’HARA J F, et al. Dynamically reconfigurable terahertz metamaterial through photo-doped semiconductor[J]. Applied Physics Letters, 2011, 99(23): 231101. [21] ZHU J, HAN J G, TIAN Z, et al. Thermal broadband tunable terahertz metamaterials[J]. Optics Communications, 2011, 284(12): 3129 – 3133. [22] DU K K, LI Q, ZHANG W C, et al. Wavelength and thermal distribution selectable microbolometers based on metamaterial absorbers[J]. IEEE Photonics Journal, 2015, 7(3): 6800908. [23] RAETHER H. Surface plasmons[M]//HÖHLER G. Springer tracts in modern physics. Berlin: Springer, 1988. [24] [25] GRANDE M, VINCENTI M A, STOMEO T, et al. Graphene-based perfect optical absorbers harnessing guided mode resonances[J]. Optics Express, 2015, 23(16): 21032 – 21042. ZHANG S, WANG Y F, WANG S H, et al. Wavelength-tunable perfect absorber based on guided￾mode resonances[J]. Applied Optics, 2016, 55(12): 3176 – 3181. [26] NAIR R R, BLAKE P, GRIGORENKO A N, et al. Fine structure constant defines visual transparency of graphene[J]. Science, 2008, 320(5881): 1308. [27] GRANDE M, VINCENTI M A, STOMEO T, et al. Graphene-based absorber exploiting guided mode resonances in one-dimensional gratings[J]. Optics Express, 2014, 22(25): 31511 – 31519. [28] WANG X, MA Q, WU L M, et al. Tunable terahertz/infrared coherent perfect absorption in a monolayer black phosphorus[J]. Optics Express, 2018, 26(5): 5488 – 5496. [29] (编辑:张 磊) • 88 • 光 学 仪 器 第 41 卷
<<向上翻页
©2008-现在 cucdc.com 高等教育资讯网 版权所有