Measurement of the angle-angular momentum uncertainty of a light beam

J. Leach, S. Franke-Arnold, J. Courtial, E. Yao, S. Barnett, M. Padgett
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Abstract

The summary form only given. One of the many forms of the uncertainty principle concerns angular position and angular momentum. We demonstrate this in the case of light: the more the angular position of a light beam is restricted by passing it through a radial aperture, the larger the spread in the beam's angular-momentum components. We prepare laser beams in different angular momentum states by reflecting them from a phase hologram, which determines the orbital-angular-momentum state, and passing them through a quarter-wave plate, which determines the spin state. We can measure the angular-momentum components in the beam in the form of resonances of a novel beam-rotating ring resonator. Our results are in broad agreement with the predictions of the uncertainty principle.
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光束角-角动量不确定度的测量
摘要形式只给出。测不准原理的许多形式之一与角位置和角动量有关。我们在光的例子中证明了这一点:光束的角位置越受通过径向孔径的限制,光束的角动量分量的传播就越大。我们通过相位全息图(确定轨道-角动量态)反射激光束,制备不同角动量态的激光束,并使其通过四分之一波片(确定自旋态)。我们可以用一种新型的光束旋转环形谐振器的共振形式来测量光束中的角动量分量。我们的结果与测不准原理的预测基本一致。
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