Polarized thermal radiation by layer-by-layer metallic emitters with sub-wavelength grating

Thumbnail Image
Date
2008-06-09
Authors
Lee, Jae-Hwang
Leung, Wai
Kim, Tae Guen
Ho, Kai-Ming
Major Professor
Advisor
Committee Member
Journal Title
Journal ISSN
Volume Title
Publisher
Abstract

Metallic thermal emitters consisting of two layers of differently structured nickel gratings on a homogeneous nickel layer are fabricated by soft lithography and studied for polarized thermal radiation. A thermal emitter in combination with a sub-wavelength grating shows a high extinction ratio, with a maximum value close to 5, in a wide mid-infrared range from 3.2 to 7.8 µm, as well as high emissivity up to 0.65 at a wavelength of 3.7µm. All measurements show good agreement with theoretical predictions. Numerical simulations reveal that a high electric field exists within the localized air space surrounded by the gratings and the intensified electric-field is only observed for the polarizations perpendicular to the top sub-wavelength grating. This result suggests how the emissivity of a metal can be selectively enhanced at a certain range of wavelengths for a given polarization.

Series Number
Journal Issue
Is Version Of
Versions
Series
Academic or Administrative Unit
Type
article
Comments

This article is from Optics Express 16 (2008): 8742–8747, doi:10.1364/OE.16.008742. Posted with permission.

Rights Statement
Copyright
Tue Jan 01 00:00:00 UTC 2008
Funding
DOI
Supplemental Resources
Collections