Title :
Radiation filters for the terahertz range using total internal reflection phenomenon
Author :
Syrneva, Aleksandra S. ; Chesnokov, Vladimir V. ; Checnokov, Dimetriy V.
Author_Institution :
Siberian State Geodesic Acad., Novosibirsk, Russia
Abstract :
The optical filter under development employing frustrated total internal reflection is a micro-mechanical device containing two silicon rectangular prisms. There is a flat silicon plane among hypotenuse edges of the prisms. The silicon plane is a Fabry-Perot resonator, with clearances h1 among the plate and prism edges being its mirrors. Theoretical resolution of the optical filter would be R ap 1,5middot103 if h1= 50 mum and R ap 3middot105 if h1 = 100 mum with the thickness of the silicon plane being h = 65 mum; wavelength lambda = 100 mum; free spectral region Deltalambda/lambda ap 0,3...0,4, transmission in the maximum of spectral characteristics 0,6 (provided input and output silicon prism legs bloom).
Keywords :
Fabry-Perot resonators; elemental semiconductors; light reflection; light transmission; micro-optomechanical devices; micromirrors; microwave photonics; optical filters; optical prisms; silicon; terahertz wave devices; Fabry-Perot resonator; Si; flat silicon plane; hypotenuse edges; micromechanical device; mirrors; optical filter; plate; radiation filters; silicon rectangular prisms; size 65 mum; terahertz range; total internal reflection; transmission spectral characteristics; wavelength 100 mum; Electromagnetic reflection; Fabry-Perot; Frequency; Mirrors; Nonhomogeneous media; Optical filters; Optical reflection; Optical resonators; Silicon; Submillimeter wave filters; Optical filter; plane; silicon prism;
Conference_Titel :
Modern Problems of Nanoelectronics, Micro- and Nanosystem Technologies, 2009. INTERNANO 2009. International School and Seminar on
Conference_Location :
Novosibirsk
Print_ISBN :
978-1-4244-5534-8
DOI :
10.1109/INTERNANO.2009.5335624