Author
Didari, Azadeh, Mengüç, Mustafa Pınar
Publication Date
2018
Publication Place
-
SPIE
Subject
Nano-scale radiative cooling, Phononic metasurfaces, Biomimicry designs, Morpho butterfly, Finite difference time domain method
Type
Document
Language
English
Digital
Yes
Manuscript
No
Library
Özyeğin University
Library Asset ID
978-1-5106-2034-6
Record ID
59cbc8fe-9373-425d-9ac6-d432d33956f9
Library Location
Mechanical Engineering
Date
2018
Sample Text
Inspired by the mechanism of the wings of Morpho butterfly, here we propose biomimicry designs which have the potential to be used for radiative cooling purposes. We numerically analyzed the spontaneous emission at near-field and determined radiative heat flux at nano-scale in order to investigate the impact of geometric variations and material selection in these systems. Our findings suggest that these metasurfaces which support phononic surface waves, can be used to tailor radiative heat transfer at nano-scale in the atmospheric transparency window (8-13 mu m) within the infrared regime.
Editör
Lakhtakia, A., Mackay, T. G.
Cilt
10731