Device applications of cryogenic optical refrigeration


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MELGAARD, Seth D., Denis V. SELETSKIY, Richard I. EPSTEIN, Jay V. ALDEN, Mansoor SHEIK-BAHAE, 2014. Device applications of cryogenic optical refrigeration. Laser refrigeration of solids VII. San Francisco, 5. Feb 2014 - 6. Feb 2014. In: EPSTEIN, Richard I., ed., Denis SELETSKIY, ed., Mansoor SHEIK-BAHAE, ed.. Laser refrigeration of solids VII : 5-6 February 2014, San Francisco, California, United States. Bellingham, Washington:SPIE, 900002. ISSN 0277-786X. eISSN 1996-756X. ISBN 978-0-8194-9913-4. Available under: doi: 10.1117/12.2039956

@inproceedings{Melgaard2014Devic-32864, title={Device applications of cryogenic optical refrigeration}, year={2014}, doi={10.1117/12.2039956}, number={9000}, isbn={978-0-8194-9913-4}, issn={0277-786X}, address={Bellingham, Washington}, publisher={SPIE}, series={Proceedings of SPIE}, booktitle={Laser refrigeration of solids VII : 5-6 February 2014, San Francisco, California, United States}, editor={Epstein, Richard I. and Seletskiy, Denis and Sheik-Bahae, Mansoor}, author={Melgaard, Seth D. and Seletskiy, Denis V. and Epstein, Richard I. and Alden, Jay V. and Sheik-Bahae, Mansoor}, note={Article Number: 900002} }

Alden, Jay V. Melgaard, Seth D. With the coldest solid-state temperatures (ΔT <185K from 300K) achievable by optical refrigeration, it is now timely to apply this technology to cryogenic devices. Along with thermal management and pump absorption, this work addresses the most key engineering challenge of transferring cooling power to the payload while efficiently rejecting optical waste-heat fluorescence. We discuss our optimized design of such a thermal link, which shows excellent performance in optical rejection and thermal properties. eng 2014 Device applications of cryogenic optical refrigeration 2016-02-04T12:13:19Z Melgaard, Seth D. Epstein, Richard I. Sheik-Bahae, Mansoor Seletskiy, Denis V. Alden, Jay V. Epstein, Richard I. 2016-02-04T12:13:19Z Seletskiy, Denis V. Sheik-Bahae, Mansoor

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