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Generation of an ultra-short electrical pulse with width shorter than the excitation laser

机译:产生宽度比激发激光短的超短电脉冲

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摘要

We demonstrate experimentally a rare phenomenon that the width of an electrical response is shorter than that of the excitation laser. In this work, generation of an ultrashort electrical pulse is by a semi-insulating GaAs photoconductive semiconductor switch (PCSS) and the generated electrical pulse width is shorter than that of the excitation laser from diode laser. When the pulse width and energy of the excitation laser are fixed at 25.7 ns and 1.6 μJ respectively, the width of the generated electrical pulse width by 3-mm-gap GaAs PCSS at the bias voltage of 9 kV is only 7.3 ns. The model of photon-activated charge domain (PACD) is used to explain the peculiar phenomenon in our experiment. The ultrashort electrical pulse width is mainly relevant to the time interval of PACD from occurrence to disappearance in the mode. The shorter the time interval is, the narrower the electrical pulse width will become. In more general terms, our result suggests that in nonlinear regime a response signal can have a much short width than the excitation pulses. The result clearly indicates that generating ultrashort electrical pulses can be achieved without the need of ultrashort lasers.
机译:我们通过实验证明了一种罕见的现象,即电响应的宽度小于激发激光器的宽度。在这项工作中,通过半绝缘GaAs光电导半导体开关(PCSS)产生超短电脉冲,并且所产生的电脉冲宽度比来自二极管激光器的激发激光的电脉冲宽度短。当激发激光器的脉冲宽度和能量分别固定为25.7 ns和1.6μJ时,在9 kV的偏置电压下,由3mm间隙的GaAs PCSS产生的电脉冲宽度仅为7.3 ns。光子激活的电荷域(PACD)模型用于解释我们实验中的特殊现象。超短电脉冲宽度主要与模式中PACD从发生到消失的时间间隔有关。时间间隔越短,电脉冲宽度将变得越窄。从更笼统的角度来看,我们的结果表明,在非线性状态下,响应信号的宽度可能比激励脉冲的宽度短得多。结果清楚地表明,无需超短激光就可以产生超短电脉冲。

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