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Tuning the Quantum Efficiency of Random Lasers - Intrinsic Stokes-Shift and Gain

机译:调整随机激光器的量子效率-本征斯托克斯位移和增益

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摘要

We report the theoretical analysis for tuning the quantum efficiency of solid state random lasers. Vollhardt-Wölfle theory of photonic transport in disordered non-conserving and open random media, is coupled to lasing dynamics and solved positionally dependent. The interplay of non-linearity and homogeneous non-radiative frequency conversion by means of a Stokes-shift leads to a reduction of the quantum efficiency of the random laser. At the threshold a strong decrease of the spot-size in the stationary state is found due to the increase of non-radiative losses. The coherently emitted photon number per unit of modal surface is also strongly reduced. This result allows for the conclusion that Stokes-shifts are not sufficient to explain confined and extended mode regimes.
机译:我们报告理论分析,以调整固态随机激光器的量子效率。 Vollhardt-Wölfle在无序的非保守和开放随机介质中的光子传输理论与激射动力学耦合并解决了位置依赖性。借助于斯托克斯频移的非线性和均匀非辐射频率转换的相互作用导致随机激光器的量子效率降低。在阈值处,由于非辐射损耗的增加,发现稳态下的光斑尺寸大大减小。每模态表面的相干发射光子数也大大降低。该结果得出结论,斯托克斯位移不足以解释局限和扩展模式状态。

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