Khan et al., 2018 - Google Patents

Polarization-sensitive perfect plasmonic absorber for thin-film solar cell application

Khan et al., 2018

Document ID
10596119077067240901
Author
Khan A
Iqbal J
ur Rehman S
Publication year
Publication venue
Applied Physics A

External Links

Snippet

A polarization-sensitive perfect plasmonic absorber composed of three functional layers is designed and numerically investigated for harvesting of solar energy. The top layer is composed of plasmonic triangular nanoparticles made of aluminum, the middle layer is …
Continue reading at link.springer.com (other versions)

Similar Documents

Publication Publication Date Title
Cai et al. Design of an ultra-broadband near-perfect bilayer grating metamaterial absorber based on genetic algorithm
Ding et al. Broadband near-infrared metamaterial absorbers utilizing highly lossy metals
Ghobadi et al. Visible light nearly perfect absorber: an optimum unit cell arrangement for near absolute polarization insensitivity
Khan et al. Polarization-sensitive perfect plasmonic absorber for thin-film solar cell application
Abedini Dereshgi et al. Ultra-broadband, lithography-free, and large-scale compatible perfect absorbers: the optimum choice of metal layers in metal-insulator multilayer stacks
Sreekanth et al. A multiband perfect absorber based on hyperbolic metamaterials
Kocer et al. Reduced near-infrared absorption using ultra-thin lossy metals in Fabry-Perot cavities
Bilal et al. Nanoengineered nickel-based ultrathin metamaterial absorber for the visible and short-infrared spectrum
Baqir Wide-band and wide-angle, visible-and near-infrared metamaterial-based absorber made of nanoholed tungsten thin film
Zou et al. Broadband mid-infrared perfect absorber using fractal Gosper curve
Yang et al. Broadband thermal tunable infrared absorber based on the coupling between standing wave and magnetic resonance
Ullah et al. Novel multi-broadband plasmonic absorber based on a metal-dielectric-metal square ring array
Li et al. Tunable plasmonic absorber based on propagating and localized surface plasmons using metal-dielectric-metal structure
Meng et al. Near perfect and polarization insensitive broadband absorber based on Al2O3-Ti-Al2O3 triple layer structure
Khan et al. Tunable salisbury screen absorber using square lattice of plasmonic nanodisk
Abou Houran et al. RETRACTED ARTICLE: Polarization-insensitive and wide-angle MXene-TiN-based wideband absorber operating in the visible and near-infrared regime
Areed et al. Nearly perfect metamaterial plasmonic absorbers for solar energy applications
Baqir et al. ZrN fractal-graphene-based metamaterial absorber in the visible and near-IR regimes
Sekhi et al. Ultra-broadband, wide-angle, and polarization-insensitive metamaterial perfect absorber for solar energy harvesting
Chamoli et al. 1-D metal-dielectric-metal grating structure as an ultra-narrowband perfect plasmonic absorber in the visible and its application in glucose detection
Devendran et al. Numerical investigation of cross metamaterial shaped ultrawideband solar absorber
Dubey et al. Polarization insensitive metamaterial based electromagnetic multiband absorber in the long-wave infrared (LWIR) region
Yuan et al. Ultra-narrow-band infrared absorbers based on surface plasmon resonance
Soheilifar Wideband optical absorber based on plasmonic metamaterial cross structure
Li et al. Design of ultra-broadband metamaterial absorber from visible to infrared region