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利用光的轨道角动量检测旋转物体。

Detection of a spinning object using light's orbital angular momentum.

机构信息

School of Physics and Astronomy, Scottish Universities Physics Alliance (SUPA), University of Glasgow, Glasgow, UK.

出版信息

Science. 2013 Aug 2;341(6145):537-40. doi: 10.1126/science.1239936.

Abstract

The linear Doppler shift is widely used to infer the velocity of approaching objects, but this shift does not detect rotation. By analyzing the orbital angular momentum of the light scattered from a spinning object, we observed a frequency shift proportional to product of the rotation frequency of the object and the orbital angular momentum of the light. This rotational frequency shift was still present when the angular momentum vector was parallel to the observation direction. The multiplicative enhancement of the frequency shift may have applications for the remote detection of rotating bodies in both terrestrial and astronomical settings.

摘要

线性多普勒频移被广泛用于推断接近物体的速度,但该频移无法检测旋转。通过分析从旋转物体散射的光的轨道角动量,我们观察到与物体的旋转频率和光的轨道角动量的乘积成正比的频率位移。当角动量矢量与观察方向平行时,这种旋转频率位移仍然存在。这种频率位移的倍增增强可能在地面和天文环境中对旋转体的远程检测有应用。

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