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Conversion of laser phase noise to amplitude noise in a resonant atomic vapor: The role of laser linewidth

机译:共振原子蒸气中激光相位噪声到幅度噪声的转换:激光线宽的作用

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When laser Light propagates through a resonant medium, the transmitted beam can exhibit excess intensity noise [amplitude modulation (AM)]. In a semiclassical description of the phenomenon, laser phase noise (PM) induces fluctuations in the medium's electric susceptibility, which in turn cause fluctuations in the transmitted intensity. The process provides an efficient means for PM-to-AM conversion, and intuition suggests that large linewidth lasers should exhibit much greater PM-to-AM conversion than narrow linewidth lasers. Here we measure the relative intensity noise (RW) for two diode lasers whose Linewidths Delta v(L) differ by more than 10(2), after the lasers have propagated through a resonant rubidium vapor. Though the RIN of the narrow linewidth laser is only reduced by a factor of about 6 compared to the broad linewidth laser, our results are nonetheless consistent with numerical simulations of the PM-to-AM conversion process. In particular, both computation and analytical theory indicate that RIN is a nonlinear function of Delta v(L). For single-mode laser linewidths less than the atomic dephasing rate, RIN increases like root Delta v(L), while for linewidths greater than the atomic dephasing rate RW is a decreasing function of Delta v(L). [S1050-2947(99)00901-4]. [References: 28]
机译:当激光传播通过共振介质时,透射光束会显示出过量的强度噪声[调幅(AM)]。在对该现象的半经典描述中,激光相位噪声(PM)会引起介质的电化率波动,进而引起透射强度的波动。该过程为PM到AM的转换提供了一种有效的方法,直觉表明大线宽激光器应该比窄线宽激光器表现出更大的PM到AM转换。在这里,我们测量了两个二极管激光器的相对强度噪声(RW),这些激光器的线宽Delta v(L)相差超过10(2),这些激光器已通过共振rub蒸气传播。尽管与宽线宽激光器相比,窄线宽激光器的RIN仅减小了约6倍,但我们的结果仍然与PM到AM转换过程的数值模拟一致。特别是,无论是计算理论还是分析理论都表明RIN是Delta v(L)的非线性函数。对于小于原子移相速率的单模激光线宽,RIN像根Delta v(L)一样增加,而对于大于原子移相速率的线宽RW是Delta v(L)的减小函数。 [S1050-2947(99)00901-4]。 [参考:28]

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