首页> 外文会议>Advanced topics in optoelectronics, microelectronics, and nanotechnologies V >Increasing up to 7 Times the Stability of Passively Mode-Locked Fiber Ring Laser by Introducing in the Cavity a Certain Length of Dispersion Compensating Fiber
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Increasing up to 7 Times the Stability of Passively Mode-Locked Fiber Ring Laser by Introducing in the Cavity a Certain Length of Dispersion Compensating Fiber

机译:通过在腔中引入一定长度的色散补偿光纤,将无源锁模光纤环形激光器的稳定性提高多达7倍

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Passively Mode-Locked Fiber Lasers (PMFL) performances strongly depend on the type and position of the elements used in the cavity. We report, based on various experimental attempts to improve the performances of PMFL, an increase of up to seven times of the sol tonic stability if a length of dispersion compensating fiber (DCF) is introduced between the amplifier and the saturable absorber. This area of the cavity is very important, as found when using the same length of DCF in other positions. We also observe that the performances of the laser are improved; for the same pumping power the spectral width of the sol tonic pulse grows and its duration decreases sensitively. The optimum length of the DCF depends on cavity properties such as total length, cavity gain, and attenuation.
机译:被动锁模光纤激光器(PMFL)的性能在很大程度上取决于腔体中所用元件的类型和位置。我们报告,基于各种实验尝试来改善PMFL的性能,如果在放大器和可饱和吸收体之间引入一定长度的色散补偿光纤(DCF),则溶胶稳定性会提高多达7倍。正如在其他位置使用相同长度的DCF时发现的,腔的这一区域非常重要。我们还观察到激光器的性能得到了改善。在相同的泵浦功率下,溶胶脉冲的频谱宽度增大,其持续时间敏感地减小。 DCF的最佳长度取决于腔体属性,例如总长度,腔体增益和衰减。

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