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Detection of Magnetic Field Gradient and Single Spin Using Optically Levitated Nano-Particle in Vacuum

Detection of Magnetic Field Gradient and Single Spin Using Optically Levitated Nano-Particle in Vacuum
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摘要 Optically levitated nano-particle with spins is a promising system for high-precision measurement and quantum information processing. We theoretically analyze the ratio between the fluctuation of particle's displacement caused by spins in magnetic field and caused by molecular collisions of the residual air. When the ratio is larger than unity, the displacement fluctuation of spins flipping can be remarkably detected. By theoretical analysis and numerical simulation, we propose and validate a scheme for the detection of gradient of the magnetic field by levitating ferromagnetic nano-particle, and also put forward a realizable detection scheme of the single spin by levitating nano-diamond particle with single nitrogen-vacancy(NV) centers.
作者 Ke-Wen Xiao Lei-Ming Zhou Zhang-Qi Yin Nan Zhao 肖科文;周雷鸣;尹璋琦;赵楠(Beijing Computational Science Research Center,Beijing 100084,China;Center for Quantum Information,Institute for Interdisciplinary Information Sciences,Tsinghua University,Beijing 100084,China)
出处 《Communications in Theoretical Physics》 SCIE CAS CSCD 2018年第7期97-105,共9页 理论物理通讯(英文版)
基金 Supported by the National Natural Science Foundation of China under Grant Nos.11374032,61435007,and 11704026 the Joint Fund of the Ministry of Education of China under Grant No.6141A02011604 NSAF(China)under Grant No.U1530401 National Key Research and Development Program of China under Grant No.2016YFA0301201
关键词 optical tweezers spin detection the detection of magnetic field gradient 粒子 Nano 磁场 光学 坡度 真空 纺纱 nano
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