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Spatial propagation of quantum light in nonlinear waveguiding devices: Theory and applications

机译:非线性波导器件中量子光的空间传播:理论与应用

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We present the main theoretical results on spatial propagation of quantum light in nonlinear waveguiding devices together with a few applications. We show that the quantization of the classical momentum provides a consistent quantum mechanical formulation of both the linear and the nonlinear quantum light propagation in waveguiding devices. The momentum operator allows us to derive the correct spatial Heisenberg's equations for the forward and backward absorption and emission operators and consequently to analyze the spatial propagation in the multimode optical-field strength space. For that purpose we use the Feynman's path integral method in order to derive the quantum spatial optical propagators of different nonlinear waveguiding devices and accordingly to calculate the spatial propagation of the optical-field strength probability amplitude of quantum states in these nonlinear devices. Likewise, we present a preliminary and heuristic formulation of quantum dissipation in order to take into account the losses under spatial quantum propagation in lossy nonlinear waveguiding devices. It must be stressed that these optical-field strength probabilities have the advantage of being measured by homodyne techniques and therefore their theoretical analysis is of a remarkable interest in the optical characterization of quantum states obtained under linear and nonlinear propagation in waveguiding devices.
机译:我们提出了量子光在非线性波导器件中的空间传播的主要理论结果以及一些应用。我们表明经典动量的量化提供了波导装置中线性和非线性量子光传播的一致量子力学公式。动量算子使我们能够为向前和向后的吸收和发射算子推导正确的空间海森堡方程,从而分析多模光场强度空间中的空间传播。为此,我们使用费曼路径积分法来推导不同非线性波导器件的量子空间光学传播子,并据此计算这些非线性器件中量子态的光场强度概率幅度的空间传播。同样,我们提出了一种量子耗散的初步启发式公式,以考虑有损非线性波导器件在空间量子传播下的损耗。必须强调的是,这些光场强度概率具有通过零差技术进行测量的优势,因此,它们的理论分析对于在波导器件中线性和非线性传播下获得的量子态的光学表​​征具有重大意义。

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