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Optical field-strength generalized polarization of non-stationary quantum states in waveguiding photonic devices

机译:波导光子器件中非平稳量子态的光场强度广义极化

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摘要

A quantum analysis of the generalized polarization properties of multimode non-stationary states based on their optical field-strength probability distributions is presented. The quantum generalized polarization is understood as a significant confinement of the probability distribution along certain regions of a multidimensional optical field-strength space. The analysis is addressed to quantum states generated in multimode linear and nonlinear waveguiding (integrated) photonic devices, such as multimode waveguiding directional couplers and waveguiding parametric amplifiers, whose modes fulfill a spatial modal orthogonality. In particular, the generalized polarization degree of coherent, squeezed and Schr?dingers cat states is analyzed.
机译:基于多模态非平稳态的光场强度概率分布,对它们的广义偏振性质进行了量子分析。量子广义极化被理解为沿多维光场强度空间某些区域的概率分布的显着局限。该分析针对的是在多模线性和非线性波导(集成)光子器件(例如多模波导定向耦合器和波导参量放大器)中产生的量子态,其模式满足空间模态正交性。特别是,分析了相干,压缩和薛定ers猫态的广义极化度。

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