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Dynamics of correlation of quadrature amplitudes fluctuations and of correlation of photon-number fluctuations of field modes in intracavity third-harmonic generation process

机译:腔内三次谐波产生过程中正交振幅涨落相关性和场模光子数涨落相关性的动力学

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摘要

The dynamics of correlation function of quantum fluctuations of quadrature amplitudes, as well as the dynamics of correlation function of quantum fluctuations of photon-numbers of fundamental and the third-harmonics mode are investigated for the process of intracavity generation of the third-harmonic. In the case of the evolution of system from initial vacuum state of both modes into the region of great times of interaction, both correlation functions tend to the stationary value. It is shown that these correlations depend strongly on the non-linear coupling coefficient between these modes. In the case of small coupling coefficients the correlation of fluctuations of the quadrature amplitudes as well as the correlation of fluctuations of photon-number are weak. As the coupling coefficient is rising both correlations are also rising (the state of the sub-systems becomes more entangled by the corresponding variables). By further rise of the coupling coefficient the correlation of quadrature amplitudes of fluctuations vanishes (the entanglement of subsystem states over the quadrature amplitudes is also vanishing) but the correlation of fluctuations of the photon-numbers is not vanishing (the subsystems remain entangled over the photon-number variables).
机译:在三次谐波腔内产生过程中,研究了正交振幅的量子涨落的相关函数的动力学,以及基波和三次谐波模式的光子数的量子涨落的相关函数的动力学。在系统从两种模式的初始真空状态演变为相互作用的大区域的情况下,两个相关函数都趋于平稳值。结果表明,这些相关性在很大程度上取决于这些模式之间的非线性耦合系数。在耦合系数小的情况下,正交振幅的波动以及光子数的波动的相关性较弱。随着耦合系数的增加,两个相关性也在增加(子系统的状态被相应的变量更纠缠)。随着耦合系数的进一步提高,波动的正交幅度的相关性消失(子系统状态在正交振幅上的纠缠也消失),但是光子数波动的相关性也消失了(子系统仍然纠缠在光子上) -number个变量)。

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