arXiv · 1809.10754
Enabling III-V-based optoelectronics with low-cost dynamic hydride vapor phase epitaxy
Abstract
Silicon is the dominant semiconductor in many semiconductor device applications for a variety of reasons, including both performance and cost. III-V materials have improved performance compared to silicon, but currently they are relegated to applications in high-value or niche markets due to the absence of a low-cost, high-quality production technique. Here we present an advance in III-V materials synthesis using hydride vapor phase epitaxy that has the potential to lower III-V semiconductor deposition costs by orders of magnitude while maintaining the requisite optoelectronic material quality that enables III-V-based technologies to outperform Si. We demonstrate the impacts of this advance by addressing the use of III-Vs in terrestrial photovoltaics, a highly cost-constrained market. The emergence of a low-cost III-V deposition technique will enable III-V electronic and opto-electronic devices, with all the benefits that they bring, to permeate throughout modern society.
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John Simon, Kevin L. Schulte, Kelsey Horowitz, Timothy Remo, David L. Young, Aaron J. Ptak. 2018-09-27. Enabling III-V-based optoelectronics with low-cost dynamic hydride vapor phase epitaxy. https://doi.org/10.3390/cryst9010003
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