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Excess spontaneous emission in variable-reflectivity-mirror lasers

机译:可变反射镜激光器中过多的自发发射

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摘要

The so-called excess spontaneous emission factors, or excess noise factors, for the lowest and highest order transverse modes in geometrically stable and unstable laser cavities having Gaussian variable-reflectivity mirrors are calculated. These factors determine both the Schawlow-Townes linewidths or quantum noise fluctuations in laser oscillators and the initial noise levels from which oscillation buildup starts in regenerative laser cavities. The excess emission factor for the lowest order Gaussian mode is found to be near unity for geometrically stable resonators, rises to a value very close to 2 at the stable-unstable boundary (planar-mirror case), and becomes substantially larger than unity for cavities having geometrically unstable optics. Excess emission factors as large as 10-100 times and larger are obtained in cavities having geometric magnifications of order 1.5-2 and aperture Fresnel numbers of a few times unity, increasing quadratically for higher values of the Fresnel number or the square of the magnification. Higher order modes have even larger excess noise factors.
机译:计算具有高斯可变反射镜的几何稳定和不稳定激光腔中最低和最高阶横向模的所谓的过量自发发射因子或过量噪声因子。这些因素既决定了Schawlowlow-Townes线宽或激光振荡器中的量子噪声波动,又决定了在再生激光腔中开始产生振荡的初始噪声水平。对于几何稳定的谐振器,发现最低阶高斯模的过量发射因子接近于单位,在稳定不稳定的边界(平面镜情况)上升到非常接近2的值,并且变得比腔体的单位要大得多。具有几何不稳定的光学器件。在几何放大倍数为1.5-2且孔径菲涅耳数为1的几倍的腔体中,可以获得10-100倍甚至更大的过量发射因子,对于较高的菲涅耳数或放大倍数,平方增加。高阶模式具有更大的过量噪声因子。

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