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Wavelength Jumps and Multimode Instabilities in Integrated Master Oscillator Power Amplifiers at 1.5μ: Experiments and Theory

机译:集成主振荡器功率放大器中的1.5μm波长跳跃和多模不稳定性:实验和理论

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摘要

We analyze the large (>10 nm) and abrupt jumps in emission wavelength, together with the multimode instabilities associated with them, which are observed in monolithically integrated master oscillator power amplifiers emitting at 1.5 \mum. The physical origin of such phenomena is investigated in the framework of a travelling-wave model which phenomenologically incorporates thermal effects via self and cross-heating of the different sections of the device. The occurrence of the wavelength jumps and the instabilities as a function of the injected currents in the two sections is interpreted in terms of a thermally tuned competition between the modes of the master oscillator and the compound cavity modes.
机译:我们分析了发射波长中较大的(> 10 nm)突变和突变,以及与之相关的多模不稳定性,这种现象在以1.5μm的单片集成的主振荡器功率放大器中观察到。在行波模型的框架内研究了这种现象的物理起源,该行波模型在现象学上通过设备不同部分的自热和交叉加热结合了热效应。根据主振荡器模式和复合腔模式之间的热调谐竞争,可以解释两个部分中波长跳跃的发生和不稳定性作为注入电流的函数。

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