Квантовое измерение амплитуды и фазы электромагнитного поля методом оптического гомодинирования

А. В. Козловский
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Abstract

The possibility of measuring the amplitude and phase of the electromagnetic field by optical light homodyning is shown. A new method for determining the relative phase of the field using the interference scheme of balanced homodyne detection is proposed. The method is based on direct measurement of the average complex amplitude of a quantum field mixed with a classical field using a passive symmetric beam splitter under conditions of a balanced homodyne measurement scheme. A "direct" measurement of the average field amplitude is a direct measurement of the real and imaginary parts of the average quantum mechanical value of the complex field amplitude by homodyning. By comparison with the quantum theory of the Hermitian phase operator of the electromagnetic field, the accuracy of this measurement is estimated for various quantum states of the microscopic electromagnetic field.
光同位素测定振幅和电磁场相
给出了用光学光同差法测量电磁场振幅和相位的可能性。提出了一种利用平衡差检测干涉方案确定场相对相位的新方法。该方法是在平衡同差测量方案的条件下,利用被动对称分束器直接测量量子场与经典场混合的平均复振幅。平均场振幅的“直接”测量是用同差法直接测量复场振幅的平均量子力学值的实部和虚部。通过与电磁场厄米相算符的量子理论进行比较,估计了该测量方法在微观电磁场的各种量子态下的精度。
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