An optical tweezer phonon laser

被引:0
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作者
Robert M. Pettit
Wenchao Ge
P. Kumar
Danika R. Luntz-Martin
Justin T. Schultz
Levi P. Neukirch
M. Bhattacharya
A. Nick Vamivakas
机构
[1] University of Rochester,Institute of Optics
[2] University of Rochester,Center for Coherence and Quantum Optics
[3] Rochester Institute of Technology,School of Physics and Astronomy
[4] University of Rochester,Department of Physics and Astronomy
[5] Los Alamos National Laboratory,Materials Science Program
[6] University of Rochester,undefined
来源
Nature Photonics | 2019年 / 13卷
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摘要
Phonon lasers are mechanical analogues of the ubiquitous optical laser and have been realized in a variety of contexts1–12. However, no such demonstration exists for mesoscopic levitated optomechanical systems, which are emerging as important platforms for conducting fundamental tests of quantum mechanics13–15 and gravity16, as well as for developing sensing modalities that couple mechanical motion to electron spin17–20 and charge21. Inspired by the pioneering work of Arthur Ashkin on optical tweezers22,23, we introduce a mesoscopic, frequency-tunable phonon laser based on the centre-of-mass oscillation of a silica nanosphere levitated in an optical tweezer under vacuum. Unlike previous levitated realizations, our scheme is general enough to be used on single electrons, liquid droplets or even small biological organisms24. Our device thus provides a pathway for a coherent source of phonons on the mesoscale that can be applied to both fundamental problems in quantum mechanics as well as tasks of precision metrology25–27.
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页码:402 / 405
页数:3
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