Coherent perfect absorption in epsilon-near-zero metamaterials

被引:195
|
作者
Feng, Simin [1 ]
Halterman, Klaus [1 ]
机构
[1] USN, Air Warfare Ctr, Div Phys, Michelson Lab, China Lake, CA 93555 USA
来源
PHYSICAL REVIEW B | 2012年 / 86卷 / 16期
关键词
METALLIC GRATINGS; BAND; LIGHT; SURFACES; ABSORBERS; DESIGN;
D O I
10.1103/PhysRevB.86.165103
中图分类号
T [工业技术];
学科分类号
08 ;
摘要
In conventional materials, strong absorption usually requires that the material have either high loss or a large thickness-to-wavelength ratio (d/lambda >> 1). We find the situation to be vastly different for bilayer structures composed of ametallic substrate and an anisotropic epsilon-near-zero (ENZ) metamaterial, where the permittivity in the direction perpendicular to its surface, epsilon(z), vanishes. Remarkably, perfect absorption can occur in situations where the metamaterial is arbitrarily thin (d/lambda << 1) and arbitrarily low loss. Our numerical and analytical solutions reveal that under the conditions epsilon(z) -> 0 and J(epsilon(z)) >> R(epsilon(z)), at perfect absorption there is a linear relationship between the thickness and the loss, which means the thickness of the absorber can be pushed to zero by reducing the material loss to zero. This counterintuitive behavior is explained in terms of coherent perfect absorption (or stimulated absorption) via critical coupling to a fast wave propagating along the ENZ layer.
引用
收藏
页数:6
相关论文
共 50 条
  • [41] A Multilayered Infrared Optical Absorber Based on Epsilon-Near-Zero Metamaterials
    Ghafari, Behnoush
    Danaie, Mohammad
    Afsahi, Majid
    PLASMONICS, 2024, 19 (03) : 1413 - 1420
  • [42] Possible implementation of epsilon-near-zero metamaterials working at optical frequencies
    Monti, Alessi
    Bilotti, Filiberto
    Toscano, Alessandro
    Vegni, Lucio
    OPTICS COMMUNICATIONS, 2012, 285 (16) : 3412 - 3418
  • [43] Complex epsilon-near-zero metamaterials for broadband light harvesting systems
    Bonifazi, Marcella
    Tian, Yi
    Fratalocchi, Andrea
    PHYSICS, SIMULATION, AND PHOTONIC ENGINEERING OF PHOTOVOLTAIC DEVICES VII, 2018, 10527
  • [44] Magneto-optical characteristics of layered Epsilon-Near-Zero metamaterials
    Abdi-Ghaleh, Reza
    Suldozi, Reza
    SUPERLATTICES AND MICROSTRUCTURES, 2016, 97 : 242 - 249
  • [45] Uniaxial epsilon-near-zero metamaterials: from superlensing to double refraction
    Zapata-Rodriguez, Carlos J.
    Pastor, David
    Miret, Juan J.
    Vukovic, Slobodan
    JOURNAL OF NANOPHOTONICS, 2014, 8
  • [46] Funneling Spontaneous Emission into Waveguides via Epsilon-Near-Zero Metamaterials
    Channab, M.
    Pirri, C. F.
    Angelini, A.
    NANOMATERIALS, 2021, 11 (06)
  • [47] Goos-Hänchen effect in epsilon-near-zero metamaterials
    Yadong Xu
    C. T. Chan
    Huanyang Chen
    Scientific Reports, 5
  • [48] Loss enhanced transmission and collimation in anisotropic epsilon-near-zero metamaterials
    Sun, Lei
    Feng, Simin
    Yang, Xiaodong
    APPLIED PHYSICS LETTERS, 2012, 101 (24)
  • [49] Controlling the plasmon resonance via epsilon-near-zero multilayer metamaterials
    Habib, Mohsin
    Briukhanova, Daria
    Das, Nekhel
    Yildiz, Bilge Can
    Caglayan, Humeyra
    NANOPHOTONICS, 2020, 9 (11) : 3637 - 3644
  • [50] Radiative engineering with refractory epsilon-near-zero metamaterials (Conference Presentation)
    Dyachenko, Pavel N.
    Molesky, Sean J.
    Petrov, Alexander Y.
    Stoermer, Michael
    Krekeler, Tobias
    Lang, Slawa
    Ritter, Martin
    Jacob, Zubin
    Eich, Manfred
    METAMATERIALS X, 2016, 9883