Background: In this article, III-V semiconductors are proposed as materials for far-infrared and terahertz plasmonic applications. We suggest criteria to estimate appropriate spectral range for each material including tuning by fine doping and magnetic field. Methods: Several single-crystal wafer samples (n, p-doped GaAs, n-doped InP, and n, p-doped and undoped InSb) are characterized using reflectivity measurement and their optical properties are described using the Drude-Lorentz model, including magneto-optical anisotropy. Results: The optical parameters of III-V semiconductors are presented. Moreover, strong magnetic modulation of permittivity was demonstrated on the undoped InSb crystal wafer in the terahertz spectral range. Des...
Semiconductors are efficient emitters of terahertz (THz, 1012 Hz) radiation. Non-contact means of ac...
There is a demand for more efficient sources of electromagnetic radiation in the terahertz (THz, 101...
The use of magneto-optical techniques to tune the plasmonic response of nanostructures—magnetoplasmo...
Abstract Background In this article, III-V semiconductors are proposed as materials for far-infrared...
Magneto-optical permittivity tensor spectra of undoped InSb, n-doped and p-doped InSb crystals were ...
Dispersion plasmonic interaction at an interface between a doped semiconductor and a dielectric is e...
The plasmonic properties of semiconductors, transparent conductive oxides, transition metal nitrides...
The terahertz regime has until recently been some what neglected due to the difficulty of generating...
Copyright © 2008 American Institute of Physics. This article may be downloaded for personal use only...
Electrical and optical characterizations of heterostructures and thin films based on group III-V comp...
Generation of terahertz radiation from semiconductor surfaces has great potential for investigation ...
We have examined the emission of terahertz-frequency radiation from indium phosphide (InP) under ult...
Optoelectronics is quickly becoming a fast emerging technology field. It refers to detect or emit e...
We experimentally demonstrate surface plasmon resonance (SPR) in the terahertz range in InSb and InA...
Surface plasmons (SPs) are the electromagnetic (EM) waves due to the light coupled with surface char...
Semiconductors are efficient emitters of terahertz (THz, 1012 Hz) radiation. Non-contact means of ac...
There is a demand for more efficient sources of electromagnetic radiation in the terahertz (THz, 101...
The use of magneto-optical techniques to tune the plasmonic response of nanostructures—magnetoplasmo...
Abstract Background In this article, III-V semiconductors are proposed as materials for far-infrared...
Magneto-optical permittivity tensor spectra of undoped InSb, n-doped and p-doped InSb crystals were ...
Dispersion plasmonic interaction at an interface between a doped semiconductor and a dielectric is e...
The plasmonic properties of semiconductors, transparent conductive oxides, transition metal nitrides...
The terahertz regime has until recently been some what neglected due to the difficulty of generating...
Copyright © 2008 American Institute of Physics. This article may be downloaded for personal use only...
Electrical and optical characterizations of heterostructures and thin films based on group III-V comp...
Generation of terahertz radiation from semiconductor surfaces has great potential for investigation ...
We have examined the emission of terahertz-frequency radiation from indium phosphide (InP) under ult...
Optoelectronics is quickly becoming a fast emerging technology field. It refers to detect or emit e...
We experimentally demonstrate surface plasmon resonance (SPR) in the terahertz range in InSb and InA...
Surface plasmons (SPs) are the electromagnetic (EM) waves due to the light coupled with surface char...
Semiconductors are efficient emitters of terahertz (THz, 1012 Hz) radiation. Non-contact means of ac...
There is a demand for more efficient sources of electromagnetic radiation in the terahertz (THz, 101...
The use of magneto-optical techniques to tune the plasmonic response of nanostructures—magnetoplasmo...