Smith, J. A., Hill, P., Klitis, C. , Weituschat, L., Postigo, P. A., Sorel, M. , Dawson, M. D. and Strain, M. J. (2021) High precision integrated photonic thermometry enabled by a transfer printed diamond resonator on GaN waveguide chip. Optics Express, 29(18), pp. 29095-29106. (doi: 10.1364/OE.433607) (PMID:34615026)
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Abstract
We demonstrate a dual-material integrated photonic thermometer, fabricated by high accuracy micro-transfer printing. A freestanding diamond micro-disk resonator is printed in close proximity to a gallium nitride on a sapphire racetrack resonator, and respective loaded Q factors of 9.1 × 104 and 2.9 × 104 are measured. We show that by using two independent wide-bandgap materials, tracking the thermally induced shifts in multiple resonances, and using optimized curve fitting tools the measurement error can be reduced to 9.2 mK. Finally, for the GaN, in a continuous acquisition measurement we record an improvement in minimum Allan variance, occurring at an averaging time four times greater than a comparative silicon device, indicating better performance over longer time scales.
Item Type: | Articles |
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Status: | Published |
Refereed: | Yes |
Glasgow Author(s) Enlighten ID: | Strain, Dr Michael and Klitis, Dr Charalambos and Sorel, Professor Marc |
Authors: | Smith, J. A., Hill, P., Klitis, C., Weituschat, L., Postigo, P. A., Sorel, M., Dawson, M. D., and Strain, M. J. |
College/School: | College of Science and Engineering > School of Engineering > Electronics and Nanoscale Engineering |
Journal Name: | Optics Express |
Publisher: | Optical Society of America |
ISSN: | 1094-4087 |
ISSN (Online): | 1094-4087 |
Published Online: | 25 August 2021 |
Copyright Holders: | Copyright © 2021 The Authors |
First Published: | First published in Optics Express 29(18): 29095-29106 |
Publisher Policy: | Reproduced under a Creative Commons License |
Data DOI: | 10.15129/f7404ca9-fd0e-4ef6-a8ad-8372f0ff52db |
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