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Manipulation of Electrical Flicker-Noise and Line Narrowing in Free-Running Quantum-Cascade Lasers

机译:自由运行量子级联激光器中的电闪烁噪声和线变窄的操纵

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Intrinsic linewidths of quantum-cascade lasers are found to be extremely narrow, ~100 Hz. However, the free running linewidths (usually ~1 MHz) of existing quantum-cascade lasers are governed by flicker frequency-noise that is identified to originate from electrical flicker-noise in the devices. Obviously, substantial suppression of the electrical flicker noise is required for substantial narrowing of free-running LWs. In this presentation, we show systematic experimental results of flicker voltage-noise power-spectral density obtained with mid-infrared quantum-cascade lasers of designed positioning of impurities in injectors. The measured noise-levels depending strongly on impurity position as well as device-temperature are evaluated with an ad hoc model based on fluctuating charge-dipoles induced by trapping and de-trapping at impurity states in their injectors. It is shown that quasi-delta doping of impurities leads to strong suppression of electrical flicker noise by minimization of the dipole-length at a certain temperature, for instance ~300 K and, in turn, is expected to narrow astonishingly the free-running line-width down below 10 kHz without assistances of any types of feedback schemes.
机译:发现量子级联激光器的本征线宽非常窄,约为100 Hz。但是,现有的量子级联激光器的自由运行线宽(通常约为1 MHz)受闪烁频率噪声支配,该噪声被确定为源自设备中的电子闪烁噪声。显然,要使自由运行的LW大大缩小,就需要对电闪烁噪声进行充分的抑制。在此演示中,我们显示了使用中红外量子级联激光器设计的注射器中杂质位置获得的闪烁电压噪声功率谱密度的系统实验结果。利用ad hoc模型,根据在其注射器中杂质状态下的俘获和去俘获引起的波动的电荷偶极子,通过ad hoc模型对所测得的与杂质位置以及器件温度密切相关的噪声水平进行了评估。结果表明,在一定温度下(例如〜300 K),偶极子长度最小化,杂质的准三角洲掺杂会导致电闪烁噪声的强烈抑制,从而有望使自由运行线惊人地变窄。 -宽度低于10 kHz,无需任何类型的反馈方案的帮助。

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