Graham D. Brucehttps://orcid.org/0000-0003-3403-0614,1 Yoshihiko Arita,1 XiaoYong Duan,2 Ewan M. Wright,3 Stephen H. Simpson,4 Pavel Zemánek,4 Kishan Dholakia1,5,6
1Univ. of St. Andrews (United Kingdom) 2Jiaxing Univ. (China) 3The Univ. of Arizona (United States) 4Institute of Scientific Instruments of the CAS, v.v.i. (Czech Republic) 5The Univ. of Adelaide (Australia) 6Yonsei Univ. (Korea, Republic of)
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Optical binding in liquid and in vacuum continues to unveil and enable new physics. We present two results. Firstly, we show how, for particles beyond the Rayleigh limit, surprising asymmetric forces can arise in counter-propagating beams. These can cause particle transport or instability. Secondly, we show how optical binding between two microspheres levitated in vacuum can be used for sympathetic cooling of the centre of mass motions of the spheres to sub-Kelvin temperatures.
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Graham D. Bruce, Yoshihiko Arita, XiaoYong Duan, Ewan M. Wright, Stephen H. Simpson, Pavel Zemánek, Kishan Dholakia, "Sympathetic cooling and asymmetric interactions in optical binding," Proc. SPIE PC12436, Complex Light and Optical Forces XVII, PC124360Q (17 March 2023); https://doi.org/10.1117/12.2650232