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Excess Quantum Noise in Nonnormal Oscillators

机译:非正规振荡器中的量子噪声

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The eigenmodes or "normal modes" of many common laser cavities are in fact eigensolutions of nonhermitian or non-self-adjoint operators, and this unfamiliar circumstance leads to distinctly "nonnormal" behavior for such lasers. Elementary examples include the transverse modes in gain-guided diode lasers and geometrically unstable optical resonators, the longitudinal modes in lasers with large output coupling at one end, and the polarization modes of twisted bire-fringent cavities. The modes of these systems are all nonorthogonal in the usual power-orthogonal or energy-orthogonal sense, and as a consequence many of the conventional conclusions of classical and quantum noise theory must be substantially modified. Laser oscillators having nonnormal cavity modes are subject in partically modified. Laser oscillators having nonnormal cavity modes are subject in particular to a so-called Petermann excess noise factor or a large excess spontaneous emission per mode. These excess noise properties have been decisively confirmed by observations of greatly increased Schawlow-Townes linewidths in such lasers.
机译:固有模式或许多共同的激光腔的“正常模式”是nonhermitian或者非自伴算的其实本征,和这个陌生的环境导致了这种激光器明显“非正常”的行为。基本的例子包括在增益导引二极管激光器的横向模式和几何不稳定光学谐振器,在一个端部与大的输出耦合的激光器的纵向模式,并且扭曲bire-fringent腔的偏振模式。这些系统的模式都在通常的功率正交或能量正交感非正交,并且作为经典和量子噪声理论的常规结论的结果许多必须大幅度修改。具有非正则腔模激光振荡器是受试者在partically修改。具有非正则腔模激光振荡器受到特别涉及一种所谓的彼得曼过量噪声因子或每个模式大量过量的自发发射。这些多余的噪音特性已经通过这种激光器大大增加肖洛,汤斯线宽的观察得到证实果断。

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