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Photon entanglement signatures in difference-frequency-generation

机译:差频产生中的光子纠缠签名

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摘要

In response to quantum optical fields, pairs of molecules generate coherent nonlinear spectroscopy signals. Homodyne signals are given by sums over terms each being a product of Liouville space pathways of the pair of molecules times the corresponding optical field correlation function. For classical fields all field correlation functions may be factorized and become identical products of field amplitudes. The signal is then given by the absolute square of a susceptibility which in turn is a sum over pathways of a single molecule. The molecular pathways of different molecules in the pair are uncorrelated in this case (each path of a given molecule can be accompanied by any path of the other). However, entangled photons create an entanglement between the molecular pathways. We use the superoperator nonequlibrium Green’s functions formalism to demonstrate the signatures of this pathway-entanglement in the difference frequency generation signal. Comparison is made with an analogous incoherent two-photon fluorescence signal.
机译:响应于量子光学场,成对的分子产生相干非线性光谱信号。均相信号由总和给出,总和是每个分子对的利维尔空间路径乘以相应的光场相关函数的乘积。对于经典场,所有场相关函数都可以分解并成为场振幅的相同乘积。信号然后由磁化率的绝对平方给出,磁化率的绝对平方又是单个分子路径上的总和。在这种情况下,该对中不同分子的分子路径是不相关的(给定分子的每个路径都可以伴有另一个分子的任何路径)。但是,纠缠的光子会在分子路径之间产生纠缠。我们使用超级算子非平衡格林函数形式来证明差频生成信号中这种路径缠结的特征。用类似的非相干双光子荧光信号进行比较。

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