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首页> 外文期刊>Physical Review, A. Atomic, molecular, and optical physics >Quantum-noise power spectrum of fields with discrete classical components
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Quantum-noise power spectrum of fields with discrete classical components

机译:具有离散经典分量的场的量子噪声功率谱

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摘要

We present an algorithmic approach to calculate the quantum-noise spectral density of photocurrents generated by optical fields with arbitrary discrete classical spectrum in coherent or squeezed states. The measurement scheme may include an arbitrary number of demodulations of the photocurrent. Thereby, our method is applicable to the general heterodyne detection scheme, which is implemented in many experiments. For some of these experiments, e.g., in laser-interferometric gravitational-wave detectors, a reliable prediction of the quantum noise of fields in coherent and squeezed states plays a decisive role in the design phase and detector characterization. Still, our investigation is limited in two ways. First, we consider only coherent and squeezed states of the field, and second, we demand that the photocurrent depends linearly on the field's vacuum amplitudes, which means that at least one of the classical components is comparatively strong.
机译:我们提出一种算法方法来计算由相干或压缩状态下具有任意离散经典光谱的光场产生的光电流的量子噪声光谱密度。该测量方案可以包括光电流的任意数量的解调。因此,我们的方法适用于在许多实验中实现的一般外差检测方案。对于其中的一些实验,例如在激光干涉重力波检测器中,相干态和压缩态场的量子噪声的可靠预测在设计阶段和检测器表征中起着决定性的作用。尽管如此,我们的调查仍然受到两种方式的限制。首先,我们仅考虑场的相干态和压缩态,其次,我们要求光电流线性依赖于场的真空幅度,这意味着至少一个经典分量相对较强。

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