Cold damping of levitated optically coupled nanoparticles

被引:9
|
作者
Liska, Vojtech [1 ]
Zemankova, Tereza [1 ]
Svak, Vojtech [1 ]
Jakl, Petr [1 ]
Jezek, Jan [1 ]
Branecky, Martin [1 ]
Simpson, Stephen H. [1 ]
Zemanek, Pavel [1 ]
Brzobohaty, Oto [1 ]
机构
[1] Czech Acad Sci, Inst Sci Instruments, Kralovopolska 147, Brno 61264, Czech Republic
来源
OPTICA | 2023年 / 10卷 / 09期
关键词
QUANTUM CONTROL; BINDING; MATTER;
D O I
10.1364/OPTICA.496072
中图分类号
O43 [光学];
学科分类号
070207 ; 0803 ;
摘要
Methods for controlling the motion of single particles, optically levitated in vacuum, have developed rapidly in recent years. The technique of cold damping makes use of feedback-controlled, electrostatic forces to increase dissipation without introducing additional thermal fluctuations. This process has been instrumental in the ground-state cooling of individual electrically charged nanoparticles. Here we show that the same method can be applied to a pair of nanoparticles, coupled by optical binding forces. These optical binding forces are about three orders of magnitude stronger than typical Coulombic inter-particle force and result in a coupled motion of both nanoparticles characterized by a pair of normal modes. We demonstrate cold damping of these normal modes, either independently or simultaneously, to sub-Kelvin temperatures at pressures of 5 x 10(-3) mbar. Experimental observations are captured by a theoretical model thatwe use to survey the parameter space more widely and to quantify the limits imposed by measurement noise and time delays. Our work paves the way for the study of quantum interactions between meso-scale particles and the exploration of multiparticle entanglement in levitated optomechanical systems. (c) 2023 Optica Publishing Group under the terms of the Optica Open Access Publishing Agreement
引用
收藏
页码:1203 / 1209
页数:7
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