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

机译:用光剥离纳米颗粒在真空中检测磁场梯度和单旋转

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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.
机译:具有旋转的光学悬浮的纳米粒子是高精度测量和量子信息处理的有希望的系统。 理论上,从磁场中旋转引起的粒子位移波动与残余空气的分子碰撞引起的颗粒位移波动之间的比率。 当该比率大于单位时,可以显着地检测到旋转翻转的位移波动。 通过理论分析和数值模拟,我们提出并验证了通过悬浮铁磁性纳米颗粒的磁场梯度检测方案,并通过用单氮悬浮纳米金刚石颗粒来提出可实现的单旋转检测方案 - Vacancy(NV)中心。

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