Band structure and thermal emission of two dimentional silicon photonic crystal

In this research, we have studied the photonic band structure, optical properties and thermal emission spectrum of 2D Silicon photonic crystal with hexagonal structure. The band structure, band gap map and the gap size versus radius have been calculated by plane wave expansion method. The maximum ba...

Full description

Bibliographic Details
Main Authors: meysam daneshvar, Ali Rostamnejadi
Format: Article
Language:English
Published: Isfahan University of Technology 2017-11-01
Series:Iranian Journal of Physics Research
Subjects:
Online Access:http://ijpr.iut.ac.ir/browse.php?a_code=A-10-2518-1&slc_lang=en&sid=1
id doaj-3d3d38d75dd246feb87b58f1d83a9336
record_format Article
spelling doaj-3d3d38d75dd246feb87b58f1d83a93362020-11-24T22:38:03ZengIsfahan University of TechnologyIranian Journal of Physics Research1682-69572345-36642017-11-01174573583Band structure and thermal emission of two dimentional silicon photonic crystalmeysam daneshvar0Ali Rostamnejadi1 Electroceram Research Center, Malek Ashtar University Of Technology, Shahin Shahr, Isfahan, Iran Electroceram Research Center, Malek Ashtar University Of Technology, Shahin Shahr, Isfahan, Iran In this research, we have studied the photonic band structure, optical properties and thermal emission spectrum of 2D Silicon photonic crystal with hexagonal structure. The band structure, band gap map and the gap size versus radius have been calculated by plane wave expansion method. The maximum band gap size of TE (TM) polarization and the complete gap size are 51% (20%) and 17% at air hole radius r=0.43a (0.50a) and r=0.48a, respectively. The optical properies have been calculated by FDTD methd in the range of 1 to 10 . The thermal emission spectrum has been obtained from absorption by Kirchhoff’s law. The obtaine results show that by engineering the band structure, the thermal emission spectrum of 2D Silicon photonic crystal can be controlled in a manner that can be used in thermophotovoltaic systems.http://ijpr.iut.ac.ir/browse.php?a_code=A-10-2518-1&slc_lang=en&sid=1Silicon Photonic crystal band structure band gap optical properties thermal emission
collection DOAJ
language English
format Article
sources DOAJ
author meysam daneshvar
Ali Rostamnejadi
spellingShingle meysam daneshvar
Ali Rostamnejadi
Band structure and thermal emission of two dimentional silicon photonic crystal
Iranian Journal of Physics Research
Silicon Photonic crystal
band structure
band gap
optical properties
thermal emission
author_facet meysam daneshvar
Ali Rostamnejadi
author_sort meysam daneshvar
title Band structure and thermal emission of two dimentional silicon photonic crystal
title_short Band structure and thermal emission of two dimentional silicon photonic crystal
title_full Band structure and thermal emission of two dimentional silicon photonic crystal
title_fullStr Band structure and thermal emission of two dimentional silicon photonic crystal
title_full_unstemmed Band structure and thermal emission of two dimentional silicon photonic crystal
title_sort band structure and thermal emission of two dimentional silicon photonic crystal
publisher Isfahan University of Technology
series Iranian Journal of Physics Research
issn 1682-6957
2345-3664
publishDate 2017-11-01
description In this research, we have studied the photonic band structure, optical properties and thermal emission spectrum of 2D Silicon photonic crystal with hexagonal structure. The band structure, band gap map and the gap size versus radius have been calculated by plane wave expansion method. The maximum band gap size of TE (TM) polarization and the complete gap size are 51% (20%) and 17% at air hole radius r=0.43a (0.50a) and r=0.48a, respectively. The optical properies have been calculated by FDTD methd in the range of 1 to 10 . The thermal emission spectrum has been obtained from absorption by Kirchhoff’s law. The obtaine results show that by engineering the band structure, the thermal emission spectrum of 2D Silicon photonic crystal can be controlled in a manner that can be used in thermophotovoltaic systems.
topic Silicon Photonic crystal
band structure
band gap
optical properties
thermal emission
url http://ijpr.iut.ac.ir/browse.php?a_code=A-10-2518-1&slc_lang=en&sid=1
work_keys_str_mv AT meysamdaneshvar bandstructureandthermalemissionoftwodimentionalsiliconphotoniccrystal
AT alirostamnejadi bandstructureandthermalemissionoftwodimentionalsiliconphotoniccrystal
_version_ 1725714882722004992