English

Experimental Demonstration of Dynamic Thermal Regulation using Vanadium Dioxide Thin Films

Applied Physics 2020-08-11 v1 Optics

Abstract

We present an experimental demonstration of passive, dynamic thermal regulation in a solid-state system with temperature-dependent thermal emissivity switching. We achieve this effect using a multilayered device, comprised of a vanadium dioxide (VO2) thin film on a silicon substrate with a gold back reflector. We experimentally characterize the optical properties of the VO2 film and use the results to optimize device design. Using a calibrated, transient calorimetry experiment we directly measure the temperature fluctuations arising from a time-varying heat load. Under laboratory conditions, we find that the device regulates temperature better than a constant emissivity sample. We use the experimental results to validate our thermal model, which can be used to predict device performance under the conditions of outer space. In this limit, thermal fluctuations are halved with reference to a constant-emissivity sample.

Keywords

Cite

@article{arxiv.2003.00031,
  title  = {Experimental Demonstration of Dynamic Thermal Regulation using Vanadium Dioxide Thin Films},
  author = {Ahmed M. Morsy and Michael T. Barako and Vladan Jankovic and Virginia D. Wheeler and Mark W. Knight and Georgia T. Papadakis and Luke A. Sweatlock and Philip W. C. Hon and Michelle L. Povinelli},
  journal= {arXiv preprint arXiv:2003.00031},
  year   = {2020}
}
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