Localized near-field radiative heat transfer in biomimicry designs inspired by neon tetra fish

Title Localized near-field radiative heat transfer in biomimicry designs inspired by neon tetra fish
Author Didari, Azadeh, Mengüç, Mustafa Pınar
Publication Date: 2019-06
Publication Place - Begell House Inc.
Type Document
Language English
Digital Yes
Manuscript No
Library: Özyeğin University
Library Asset ID 978-156700479-3
Record ID 6ebd816b-843d-4d18-a0ae-d36ddb981e9a
Library Location Mechanical Engineering
Date 2019-06
Notes Center of Energy, Environment and Economy (CEEE/EÇEM) at Özyeğin University
Sample Text Inspired by multilayer structure of the Neon tetra tropical fish which is one of the most fascinating multilayer systems ever reported in nature, we investigate the localized effects of coupling of surface phonon polaritons in phononic multilayer geometries. Our findings suggest that near-field radiative heat flux can be enhanced by orders of magnitude when compared against the blackbody predictions in the proposed structures. These biomimicry structures which give rise to structural colours and their iridescent characteristics, may find potential in design, modelling and manufacturing of spectrally selective thermal and electronic sensors when used in the proposed platform as presented in this work.
DOI 10.1615/RAD-19.480
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Localized near-field radiative heat transfer in biomimicry designs inspired by neon tetra fish

Author Didari, Azadeh, Mengüç, Mustafa Pınar
Publication Date 2019-06
Publication Place - Begell House Inc.
Type Document
Language English
Digital Yes
Manuscript No
Library Özyeğin University
Library Asset ID 978-156700479-3
Record ID 6ebd816b-843d-4d18-a0ae-d36ddb981e9a
Library Location Mechanical Engineering
Date 2019-06
Notes Center of Energy, Environment and Economy (CEEE/EÇEM) at Özyeğin University
Sample Text Inspired by multilayer structure of the Neon tetra tropical fish which is one of the most fascinating multilayer systems ever reported in nature, we investigate the localized effects of coupling of surface phonon polaritons in phononic multilayer geometries. Our findings suggest that near-field radiative heat flux can be enhanced by orders of magnitude when compared against the blackbody predictions in the proposed structures. These biomimicry structures which give rise to structural colours and their iridescent characteristics, may find potential in design, modelling and manufacturing of spectrally selective thermal and electronic sensors when used in the proposed platform as presented in this work.
DOI 10.1615/RAD-19.480
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