[1] |
ATWATER H A, POLMAN A. Plasmonics for improved photovoltaic devices[J]. Nature Materials, 2010, 9(3):205-213. doi: 10.1038/nmat2629 |
[2] |
SAI H, YUGAMI H, KANAMORI Y, et al. Solar selective absorbers based on two-dimensional W surface gratings with submicron periods for high-temperature photothermal conversion[J]. Solar Energy Materials and Solar Cells, 2003, 79(1):35-49. doi: 10.1016/S0927-0248(02)00364-1 |
[3] |
WANG L P, ZHANG Z M. Wavelength-selective and diffuse emitter enhanced by magnetic polaritons for thermophotovoltaics[J]. Applied Physics Letters, 2012, 100(6):063902. doi: 10.1063/1.3684874 |
[4] |
LIU N, MESCH M, WEISS T, et al. Infrared perfect absorber and its application as plasmonic sensor[J]. Nano Letters, 2010, 10(7):2342-2348. doi: 10.1021/nl9041033 |
[5] |
LI Y Q, SU L, WANG B B, et al. Optical properties of cross-shaped array optical absorber in the infrared region[J]. Acta Optica Sinica, 2014, 34(1):0123002(in Chinese). doi: 10.3788/AOS |
[6] |
LEE J, ZHANG Z M. Design and fabrication of planar multilayer structures with coherent thermal emission characteristics[J]. Journal Applied Physics, 2006, 100(6):063529. doi: 10.1063/1.2349472 |
[7] |
NARAYANASWAMY A, CHEN G. Thermal emission control with one-dimensional metallodielectric photonic crystals[J]. Physical Review, 2004, B70(70):2516-2528. |
[8] |
MATTIUCCI N, BLOEMER M J, AKÖZBEK N, et al. Impedance matched thin metamaterials make metals absorbing[J]. Scientific Report, 2013, 3(11):3203. |
[9] |
LU S Q, CHAO X G, CHEN X F, et al. TE polarization perfect absorption with dual-band in metal-photonic crystal-metal structure[J]. Acta Optica Sinica, 2015, 35(1):0116003(in Chinese). doi: 10.3788/AOS |
[10] |
ZHAO D, MENG L, GONG H, et al. Ultra-narrow-band light dissipation by a stack of lamellar silver and alumina[J]. Applied Physics Letters, 2014, 104(22):221107. doi: 10.1063/1.4881267 |
[11] |
GRIGORENKO A N, POLINI M, NOVOSELOV K S. Graphene plasmonics[J]. Nature Photonics, 2012, 6(11):749-758. doi: 10.1038/nphoton.2012.262 |
[12] |
LIU M, YIN X B, ULIN-AVILA E, et al. A graphene-based broadband optical modulator[J]. Nature, 2011, 474(7349):64-67. doi: 10.1038/nature10067 |
[13] |
LIU J T, LIU N H, LI J, et al. Enhanced absorption of graphene with one-dimensional photonic crystal[J]. Applied Physics Letters, 2012, 101(5):052104. doi: 10.1063/1.4740261 |
[14] |
XIE L Y, XIAO W B, HUANG G Q, et al. Terahertz absorption of graphene enhanced by one-dimensional photonic crystal[J]. Acta Physica Sinica, 2014, 63(5):057803(in Chinese). |
[15] |
XIANG Y J, DAI X Y, GUO J, et al. Critical coupling with graphene-based hyperbolic metamaterials[J]. Scientific Reports, 2014, 4:5483 |
[16] |
NEFEDOV I S, VALAGINNOPOULOS C A, MELNIKOV L A. Perfect absorption in graphene multilayers[J]. Journal of Optics, 2013, 15(11):990-996. |
[17] |
NING R X, LIU Sh B, ZHANG H F, et al. Electromagnetic absorption characteristics of 1-D grapheme photonic crystals[J]. Laser Technology, 2015, 39(1):28-32(in Chinese). |
[18] |
HANSON G W. Dyadic Green's functions and guided surface waves for a surface conductivity model of grapheme[J]. Journal of Applied Physics, 2007, 103(6):064302. |
[19] |
DENG X H, LIU J T, YUAN J R, et al. Tunable terahertz photonic crystal structures containing graphene[J]. Acta Physica Sinica, 2015, 64(7):057801(in Chinese). |