Publikation: Optical refrigeration cools below 100K
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2014
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CLEO: QELS-Fundamental Science : part of CLEO ; 8 - 13 June 2014, San Jose, California, United States. Washington, DC: Optical Society of America, 2014, FTh4D.4. ISBN 978-1-55752-999-2. Available under: doi: 10.1364/CLEO_QELS.2014.FTh4D.4
Zusammenfassung
We report a milestone in optical refrigeration, cooling a 10% Yb:YLF crystal to 93K (ΔT~180K); obtaining the coldest solid-state temperature to date. Identification of transition metal impurities via mass spectrometry allows further cooling through purification.
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530 Physik
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Laser cooling; Rare-earth-doped materials
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CLEO : QELS_Fundamental Science, 8. Juni 2014 - 13. Juni 2014, San Jose
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MELGAARD, Seth, Alexander R. ALBRECHT, Markus HEHLEN, Denis V. SELETSKIY, Mansoor SHEIK-BAHAE, 2014. Optical refrigeration cools below 100K. CLEO : QELS_Fundamental Science. San Jose, 8. Juni 2014 - 13. Juni 2014. In: CLEO: QELS-Fundamental Science : part of CLEO ; 8 - 13 June 2014, San Jose, California, United States. Washington, DC: Optical Society of America, 2014, FTh4D.4. ISBN 978-1-55752-999-2. Available under: doi: 10.1364/CLEO_QELS.2014.FTh4D.4BibTex
@inproceedings{Melgaard2014Optic-33292, year={2014}, doi={10.1364/CLEO_QELS.2014.FTh4D.4}, title={Optical refrigeration cools below 100K}, isbn={978-1-55752-999-2}, publisher={Optical Society of America}, address={Washington, DC}, booktitle={CLEO: QELS-Fundamental Science : part of CLEO ; 8 - 13 June 2014, San Jose, California, United States}, author={Melgaard, Seth and Albrecht, Alexander R. and Hehlen, Markus and Seletskiy, Denis V. and Sheik-Bahae, Mansoor}, note={Article Number: FTh4D.4} }
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