High temperature epsilon-near-zero and epsilon-near-pole metamaterial emitters for thermophotovoltaics

Molesky, Sean, Christopher J. Dewalt, and Zubin Jacob. 2012. “High temperature epsilon-near-zero and epsilon-near-pole metamaterial emitters for thermophotovoltaics”. Optics Express 21 (S1): A90-A110.

Abstract

We propose a method for engineering thermally excited far field electromagnetic radiation using epsilon-near-zero metamaterials and introduce a new class of artificial media: epsilon-near-pole metamaterials. We also introduce the concept of high temperature plasmonics as conventional metamaterial building blocks have relatively poor thermal stability. Using our approach, the angular nature, spectral position, and width of the thermal emission and optical absorption can be finely tuned for a variety of applications. In particular, we show that these metamaterial emitters near 1500 K can be used as part of thermophotovoltaic devices to surpass the full concentration Shockley-Queisser limit of 41%. Our work paves the way for high temperature thermal engineering applications of metamaterials.

Last updated on 05/29/2021