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Quantum Fluctuations of Spatial Dissipative Solitons in a Nonlinear Interferometer

机译:非线性干涉仪中空间耗散孤子的量子涨落

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摘要

A quantum Langevin equation is derived that makes it possible to study the radiation field in a large-aperture nonlinear interferometer excited by external classical radiation. This equation is linearized in the vicinity of the solution for a stationary soliton. A mathematical formalism for obtaining a spectral representation of the solution to the linearized problem is constructed. It is shown that, in general, the excitation spectrum of a soliton consists of three branches, two of which belong to a continuous spectrum, while the third branch is discrete. The spectral representation obtained makes it possible to rigorously define the operator of soliton coordinate fluctuations, since, as is shown in the study, the traditional definition of this operator leads to a divergence in the vicinity of the solution. A new type of dissipative soliton is found, which is a natural generalization of a stationary soliton and takes into account its motion. A relation is found between this soliton and the contribution to the solution for field fluctuations from the discrete spectrum expansion. The mean squares of fluctuations of the soliton coordinate and momentum are calculated. A range of parameters is determined where the momentum of the soliton can always be measured with a spread smaller than the standard quantum limit. This possibility is related to the occurrence of states squeezed with respect to the soliton momentum. A scheme is proposed for the experimental observation of these states.
机译:推导出一个量子兰文万方程,从而有可能研究由外部经典辐射激发的大孔径非线性干涉仪中的辐射场。该方程在固定孤子的解附近线性化。构造用于获得线性化问题解的谱表示的数学形式主义。结果表明,孤子的激发光谱通常由三个分支组成,其中两个属于连续光谱,而第三个分支是离散的。所获得的频谱表示使得可以严格定义孤子坐标波动的算子,因为如研究所示,该算子的传统定义导致解附近的发散。发现了一种新型的耗散孤子,它是固定孤子的自然概括,并考虑了其运动。在该孤子与离散频谱扩展对场波动解的贡献之间找到了一种关系。计算孤子坐标和动量波动的均方。确定了一系列参数,可始终以小于标准量子极限的展宽测量孤子的动量。这种可能性与相对于孤子动量压缩的状态的发生有关。针对这些状态的实验观察,提出了一种方案。

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