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Small-signal modulation characteristics of a polariton laser

机译:极化子激光器的小信号调制特性

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摘要

Use of large bandgap materials together with electrical injection makes the polariton laser an attractive low-power coherent light source for medical and biomedical applications or short distance plastic fiber communication at short wavelengths (violet and ultra-violet), where a conventional laser is difficult to realize. The dynamic properties of a polariton laser have not been investigated experimentally. We have measured, for the first time, the small signal modulation characteristics of a GaN-based electrically pumped polariton laser operating at room temperature. A maximum −3 dB modulation bandwidth of 1.18 GHz is measured. The experimental results have been analyzed with a theoretical model based on the Boltzmann kinetic equations and the agreement is very good. We have also investigated frequency chirping during such modulation. Gain compression phenomenon in a polariton laser is interpreted and a value is obtained for the gain compression factor.
机译:大带隙材料与电注入的结合使用使极化子激光器成为有吸引力的低功率相干光源,适用于医疗和生物医学应用或短波长(紫外线和紫外线)的短距离塑料光纤通信,而传统激光难以实现实现。极化子激光器的动态特性尚未进行实验研究。我们首次测量了在室温下运行的GaN基电泵浦极化子激光器的小信号调制特性。测量的最大-3 −dB调制带宽为1.18 GHz。通过基于玻尔兹曼动力学方程的理论模型对实验结果进行了分析,一致性很好。我们还研究了这种调制过程中的频率线性调频。解释了极化子激光器中的增益压缩现象,并获得了增益压缩因子的值。

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