Absorbing infrared radiation efficiently is important for critical applications such as thermal imaging and infrared spectroscopy. Common infrared absorbing materials are not standard in Si VLSI technology. We demonstrate ultra-broadband mid-infrared absorbers based purely on silicon. Broadband absorption is achieved by the combined effects of free carrier absorption, and vibrational and plasmonic absorption resonances. The absorbers, consisting of periodically arranged silicon gratings, can be fabricated using standard optical lithography and deep reactive ion etching techniques, allowing for cost-effective and wafer-scale fabrication of micro-structures. Absorption wavebands in excess of 15 micrometers (5-20 μm) are demonstrated with more...
Infrared absorbers are essential structures in the design of thermal emitters and thermal infrared i...
The research targets the challenge of being able to bring the recently discovered nanophotonics phen...
This paper introduces a method for a broadband absorption enhancement in the LWIR range (8-12 μm), i...
In this paper, we investigate the absorption of mid-infrared light by low resistivity silicon textur...
Plasmonic perfect absorbers have found a wide range of applications in imaging, sensing, and light h...
Broadband long-wavelength infrared (LWIR) optical absorbers have important applications in thermal e...
Metamaterial-based absorbers have been extensively investigated in the terahertz (THz) range with ev...
We designed an infrared ultra-broadband metal–insulator–metal (MIM)-based absorber which is composed...
Hyperdoped silicon (hSi) fabricated via femtosecond laser irradiation has emerged as a promising pho...
We designed all-silicon, multi-featured band-selective perfect absorbing surfaces based on CMOS comp...
Black silicon (BSi) is a synthetic nanomaterial with high aspect ratio nano protrusions inducing sev...
Abstract Perfect absorbers can be used in photodetectors, thermal imaging, microbolometers, and ther...
This paper introduces an analysis on the absorption enhancement in uncooled infrared pixels using re...
In this paper, we present silicon nitride metamaterial absorber designs that accomplish large bandwi...
Far-infrared absorbers exhibiting wideband performance are in great demand in numerous applications,...
Infrared absorbers are essential structures in the design of thermal emitters and thermal infrared i...
The research targets the challenge of being able to bring the recently discovered nanophotonics phen...
This paper introduces a method for a broadband absorption enhancement in the LWIR range (8-12 μm), i...
In this paper, we investigate the absorption of mid-infrared light by low resistivity silicon textur...
Plasmonic perfect absorbers have found a wide range of applications in imaging, sensing, and light h...
Broadband long-wavelength infrared (LWIR) optical absorbers have important applications in thermal e...
Metamaterial-based absorbers have been extensively investigated in the terahertz (THz) range with ev...
We designed an infrared ultra-broadband metal–insulator–metal (MIM)-based absorber which is composed...
Hyperdoped silicon (hSi) fabricated via femtosecond laser irradiation has emerged as a promising pho...
We designed all-silicon, multi-featured band-selective perfect absorbing surfaces based on CMOS comp...
Black silicon (BSi) is a synthetic nanomaterial with high aspect ratio nano protrusions inducing sev...
Abstract Perfect absorbers can be used in photodetectors, thermal imaging, microbolometers, and ther...
This paper introduces an analysis on the absorption enhancement in uncooled infrared pixels using re...
In this paper, we present silicon nitride metamaterial absorber designs that accomplish large bandwi...
Far-infrared absorbers exhibiting wideband performance are in great demand in numerous applications,...
Infrared absorbers are essential structures in the design of thermal emitters and thermal infrared i...
The research targets the challenge of being able to bring the recently discovered nanophotonics phen...
This paper introduces a method for a broadband absorption enhancement in the LWIR range (8-12 μm), i...