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基于稳健光悬浮的纳米颗粒位置和质量计量学

Robust Optical-Levitation-Based Metrology of Nanoparticle's Position and Mass.

作者信息

Zheng Yu, Zhou Lei-Ming, Dong Yang, Qiu Cheng-Wei, Chen Xiang-Dong, Guo Guang-Can, Sun Fang-Wen

机构信息

CAS Key Lab of Quantum Information, University of Science and Technology of China, Hefei, Anhui 230026, People's Republic of China.

CAS Center For Excellence in Quantum Information and Quantum Physics, University of Science and Technology of China, Hefei, Anhui 230026, People's Republic of China.

出版信息

Phys Rev Lett. 2020 Jun 5;124(22):223603. doi: 10.1103/PhysRevLett.124.223603.

Abstract

Light has shown an incredible capability in precision measurement based on optomechanic interaction in high vacuum by isolating environment noises. However, there are still obstructions, such as displacement and mass estimation error, highly hampering the improvement of absolute accuracy at the nanoscale. Here, we present a nonlinearity based metrology to precisely measure the position and mass of a nanoparticle with optical levitation under 10^{-5}  mbar. By precisely controlling the oscillation amplitude of the levitated nanoparticle at the nonlinear regime for high accuracy calibration, we realized a feasible sub-picometer-level position measurement with an uncertainty of 1.0% without the prior information of mass, which can be further applied to weigh the femtogram-level mass with an uncertainty of 2.2%. It will also pave the way to construct a fine-calibrated optomechanic platform in high vacuum for high sensitivity and accuracy measurement in force and acceleration at the nanoscale and the study in quantum superposition at the mesoscopic scale.

摘要

通过隔离环境噪声,光在基于高真空中光机械相互作用的精密测量方面展现出了惊人的能力。然而,仍然存在一些阻碍,比如位移和质量估计误差,严重阻碍了纳米级绝对精度的提升。在此,我们提出一种基于非线性的计量方法,用于在低于(10^{-5})毫巴的压力下,通过光学悬浮精确测量纳米颗粒的位置和质量。通过在非线性区域精确控制悬浮纳米颗粒的振荡幅度以进行高精度校准,我们在无需质量先验信息的情况下,实现了不确定性为(1.0%)的可行的亚皮米级位置测量,这还可进一步用于称量飞克级质量,不确定性为(2.2%)。这也将为在高真空中构建一个精细校准的光机械平台铺平道路,以实现纳米级力和加速度的高灵敏度和高精度测量以及介观尺度下量子叠加的研究。

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