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首页> 外文期刊>Journal of Modern Optics >Effective dispersion in an inhomogeneously broadened single mode laser
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Effective dispersion in an inhomogeneously broadened single mode laser

机译:在不均匀加宽的单模激光器中的有效色散

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摘要

Recently, we have been investigating the development of a superluminal ring laser, where finely tuned anomalous dispersion leads to an enhancement in the sensitivity of the laser frequency to a change in the cavity length, by as much as six orders of magnitude, for applications such as hypersensitive rotation sensing and accelerometry, as well as for gravitational wave detection. For such a laser, as well as other lasers that are used for precision metrology, the effective dispersion - manifested in the manner in which the lasing frequency varies as a function of a change in the cavity length due to the index induced by the medium under saturated gain corresponding to steady-state lasing - is of utmost significance. In determining the effective dispersion, the role of inhomogeneous broadening (IB) must be taken into consideration carefully. In this work, we consider an inhomogeneously broadened gain medium in a single mode optical cavity, and study the effective dispersion experienced by the lasing field. It is well known that the steady state index for such a laser cannot be expressed analytically. Previous studies have employed approximate models to interpret the effective dispersion, in two limits: IB is much larger than homogeneous broadening (HB), and IB is insignificant compared to HB. Here, we use an iterative but quickly converging numerical code to determine the exact behavior of the effective dispersion under all conditions, and show that the results agree with the expected behavior in these two limits. This technique paves the way for taking into account the effective dispersion in any inhomogeneously broadened laser, including the superluminal laser, in determining accurately its sensitivity to change in cavity length, as well as it quantum noise limited linewidth.
机译:最近,我们一直在研究超腔环形激光器的开发,其中微调的异常色散可将激光频率对腔体长度变化的灵敏度提高多达六个数量级,例如作为超灵敏的旋转感应和加速度计,以及用于重力波检测。对于这种激光器以及用于精密计量的其他激光器,有效色散表现为:激光频率由于腔介质的折射率所引起的折射率随腔长的变化而变化。与稳态激射相对应的饱和增益至关重要。在确定有效色散时,必须仔细考虑不均匀加宽(IB)的作用。在这项工作中,我们考虑了单模光学腔中不均匀加宽的增益介质,并研究了激光场所经历的有效色散。众所周知,这种激光器的稳态指标不能用解析表示。先前的研究采用近似模型来解释有效色散,有两个限制:IB远大于均匀展宽(HB),IB与HB相比微不足道。在这里,我们使用一个迭代但快速收敛的数字代码来确定在所有条件下有效色散的确切行为,并表明结果与这两个范围内的预期行为相符。该技术为在准确确定其对腔体长度变化的敏感性以及量子噪声限制的线宽时考虑到在任何不均匀加宽的激光器(包括超腔激光器)中的有效色散铺平了道路。

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