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Extended dynamical range solid state photon counter

机译:扩展动态范围固态光子计数器

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The paper describes the new achievements in an all solid state photon counting technique with picosecond resolution. The extended dynamical range has been achieved: the dependence of the detection delay on the detected signal strength - the time walk -has been compensated within several orders of optical signal strength. The principal application of the detector is the millimeter resolution satellite laser ranging. The detector is based on silicon avalanche photodiode pulse biased above its break voltage. The external gating and avalanche active quenching electronics is used. The time walk of the avalanche photodiode is of the order of hundreds of picoseconds in the dynamical range of single to one hundred photons input signal strengths. The additional electronics circuit has been developed to compensate for the time walk: the input optical signal strength influences the avalanche current build up time,the maximum build up time difference is 20 psec within the dynamical range 1:1000. This time difference is sensed, stretched by the factor of ten. The stretched time interval is applied, with the negative sign, as a correction to the detector propagation delay. The detector ultimate timing resolution, temporal stability, dynamical range and its dependence on the input laser pulse length have been investigated in detail. The fieldable version of the detector is been used for satellite laser ranging purposes. The timing resolution of the entire detector better than 20 picoseconds r.m.s., the maximum dynamical range $GRT 1000:1 with the item walk bellow $POM psec have ben achieved, the results are presented. The additional applications in spectroscopy, biophysics, rangefinding and fiber optics may be considered.
机译:本文介绍了具有Pic秒分辨率的所有固态光子计数技术的新成果。已经实现了扩展的动态范围:检测延迟对检测到的信号强度的依赖性 - 在几个光信号强度的偏转级中得到了处理的时间。检测器的主要应用是毫米分辨率卫星激光测距。检测器基于硅雪崩光电二极管脉冲偏置在其断路电压之上。使用外部门控和雪崩有源淬火电子器件。 Avalanche Photodiode的时间步行是单个单个光子输入信号强度的动态范围内的数百个皮秒的顺序。已经开发了附加的电子电路以补偿时间步行:输入光信号强度影响雪崩电流积聚时间,最大构建时间差为20 psec,在动态范围内1:1000。感测这个时差,拉伸到十个。使用负符号应用拉伸时间间隔,作为对检测器传播延迟的校正。已经详细研究了检测器最终定时分辨率,时间稳定性,动态范围及其对输入激光脉冲长度的依赖性。探测器的现场现有版本用于卫星激光测距目的。整个探测器的时序分辨率优于20微秒,最大动态范围$ GRT 1000:1与物品步行符号$ POM PSEC有Ben实现,结果呈现。可以考虑光谱学,生物物理学,测距敷和光纤中的附加应用。

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