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Quantum noise of actively mode-locked lasers with dispersion and amplitude/phase modulation

机译:具有色散和幅度/相位调制的主动锁模激光器的量子噪声

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A quantum theory for the noise of optical pulses in actively mode-locked lasers is presented. In the presence of phase modulation and/or group velocity dispersion, the linear operator that governs the time evolution of the pulse fluctuations inside the laser cavity is not Hermitian (or normal) and the eigenmodes of this operator are not orthogonal. As a result, the eigenmodes have excess noise and the noise in different eigenmodes is highly correlated. We construct quantum operators for the pulse photon number, phase, timing, and frequency fluctuations. The nonorthogonality of the eigenmodes results in excess noise in the pulse photon number, phase, timing, and frequency. The excess noise depends on the frequency chirp of the pulse and is present only at low frequencies in the spectral densities of the pulse noise operators.
机译:提出了一种用于主动锁模激光器中光脉冲噪声的量子理论。在存在相位调制和/或群速度色散的情况下,控制激光腔内部脉冲波动的时间演变的线性算子不是Hermitian(或法线),并且该算子的本征模不是正交的。结果,本征模具有过多的噪声,并且不同本征模中的噪声高度相关。我们构造用于脉冲光子数,相位,定时和频率波动的量子算子。本征模的非正交性会导致脉冲光子数,相位,定时和频率中出现过多的噪声。多余的噪声取决于脉冲的频率线性调频,并且仅在脉冲噪声算子的频谱密度中以低频出现。

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