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Coherent Microwave Emission from an Electron-hole Plasma

机译:电子-空穴等离子体的相干微波发射

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Coherent microwave radiation, 6.5 to 44 GHz, is generated by InSb at 77°K with an injected electron current transverse to a magnetic field. The maximum output power is about 10 microwatts for input power levels of one to five watts. Grooves cut into the Suhl surface of the rod-shaped InSb samples impose the coherence and determine the frequency range of coherent operation. Wavelength measurements of a surface wave show that the effective groove width is equal to about a half-wavelength. A theory of double-stream interaction in a thin plasma layer with a magnetic field transverse to the current flow predicts instabilities in the observed frequency range. The theory predicts all of the qualitative and several of the quantitative features of the observed emission. Noise emission is predicted and observed at temperatures up to room temperature with appropriate onset magnetic fields. The theoretical analysis and concurrent experimental evidence demonstrate the existence of an instability in a thin-layer plasma in the absence of a magnetic field at 77°K.
机译:InSb在77°K下产生了6.5至44 GHz的相干微波辐射,注入的电子电流横向于磁场。输入功率为1到5瓦时,最大输出功率约为10微瓦。切入棒状InSb样品的Suhl表面的凹槽可增强相干性,并确定相干操作的频率范围。表面波的波长测量结果表明,有效凹槽宽度大约等于半个波长。薄等离子体层中具有与电流垂直的磁场的双流相互作用的理论预测了观察到的频率范围内的不稳定性。该理论预测了观测到的排放的所有定性和定量特征。在适当的起始磁场下,在高达室温的温度下可以预测并观察到噪声的发射。理论分析和同时进行的实验证据表明,在77°K不存在磁场的情况下,薄层等离子体中存在不稳定性。

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