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Large-area fabrication of high aspect ratio tantalum photonic crystals for high-temperature selective emitters

Author(s)
Rinnerbauer, Veronika; Ndao, Sidy; Yeng, Yi Xiang; Senkevich, Jay J.; Jensen, Klavs F.; Joannopoulos, John D.; Soljacic, Marin; Celanovic, Ivan; Geil, Robert D.; ... Show more Show less
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Abstract
The authors present highly selective emitters based on two-dimensional tantalum (Ta) photonic crystals, fabricated on 2 in. polycrystalline Ta substrates, for high-temperature applications, e.g., thermophotovoltaic energy conversion. In this study, a fabrication route facilitating large-area photonic crystal fabrication with high fabrication uniformity and accuracy, based on interference lithography and reactive ion etching is discussed. A deep reactive ion etch process for Ta was developed using an SF[subscript 6]/C[subscript 4]F[subscript 8] based Bosch process, which enabled us to achieve ∼ 8.5 μm deep cavities with an aspect ratio of ∼ 8, with very steep and smooth sidewalls. The thermal emitters fabricated by this method show excellent spectral selectivity, enhancement of the emissivity below cut-off approaching unity, and a sharp cut-off between the high emissivity region and the low emissivity region, while maintaining the low intrinsic emissivity of bare Ta above the cut-off wavelength. The experimental results show excellent agreement with numerical simulations.
Date issued
2012-12
URI
http://hdl.handle.net/1721.1/77146
Department
Massachusetts Institute of Technology. Research Laboratory of Electronics
Journal
Journal of Vacuum Science & Technology B
Publisher
American Vacuum Society (AVS)
Citation
Rinnerbauer, Veronika et al. “Large-area Fabrication of High Aspect Ratio Tantalum Photonic Crystals for High-temperature Selective Emitters.” Journal of Vacuum Science & Technology B: Microelectronics and Nanometer Structures 31.1 (2013): 011802. © 2013 American Vacuum Society
Version: Final published version
ISSN
0734-211X

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