| Literature DB >> 27991565 |
Chun-Hua Xue1,2, Feng Wu2, Hai-Tao Jiang2, Yunhui Li2, Ye-Wen Zhang2, Hong Chen2.
Abstract
We theoretically investigate wide-angle spectrally selective absorber by utilizing dispersionless Tamm plasmon polaritons (TPPs) under TM polarization. TPPs are resonant tunneling effects occurring on the interface between one-dimensional photonic crystals (1DPCs) and metal slab, and their dispersion properties are essentially determined by that of 1DPCs. Our investigations show that dispersionless TPPs can be excited in 1DPCs containing hyperbolic metamaterials (HMMs) on metal substrate. Based on dispersionless TPPs, electromagnetic waves penetrate into metal substrate and are absorbed entirely by lossy metal, exhibiting a narrow-band and wide-angle perfect absorption for TM polarization. Our results exhibit nearly perfect absorption with a value over 98% in the angle of incidence region of 0-80 degree.Entities:
Year: 2016 PMID: 27991565 PMCID: PMC5171821 DOI: 10.1038/srep39418
Source DB: PubMed Journal: Sci Rep ISSN: 2045-2322 Impact factor: 4.379
Figure 1(a) The scheme of multilayer structure ((CD) B) on a metal substrate. Here HMM layer is mimicked by a subwavelength metallodielectric stack (CD). TM-polarized EM wave launches into the structure in x − z plane with angle of incidence θ. (b) The effective permittivity tensor ε and (c) ε of substructure (CD). Layer C is Si with d = 39 nm and Layer D is ITO with d = 11 nm. In the wavelength region of 1503~2103 nm substructure (CD) can be mimicked as type-I HMMs. (d) Isofrequency surface in dispersion relation for type-I HMMs with ε > 0 and ε < 0, which indicates . By contrast, isofrequency surface for conventional isotropic medium with ε = ε > 0 is exhibited in (e), which indicates .
Figure 2(a) The reflectance spectrum and (b) reflectance phase upon 1DPC ((CD) B), respectively. The area surrounded by white dashed line indicates band gap. (c) The contour of sum of reflection phases ϕ + ϕ. Phase matching condition is satisfied at 1902 nm for all angles of incidence.
Figure 3(a) The absorption spectra of the structure ((CD) B) on metal substrate for all angles of incidence. A flat and narrow-band absorption appears in the vicinity of 1902 nm. (b) The magnetic field distributions of the structure at 1902 nm for normal incidence. The dotted line indicates the interface between unit cell of 1DPC. (c) The absorption spectra of the structure at representative angles of incidence. The labels for the curves show the angles of incidence and the value of corresponding absorption peak.
Figure 4(a) The dependence of wavelength of absorption peak on angle of incidence at different thickness d. (b) The dependence of value of absorption peak on angle of incidence at different thickness d.