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Portable Lock-In Amplifier-Based Optoelectronic Readout Circuit for High-Sensitivity Differential Measurements of Laser Pulse Energy Variations

机译:便携式锁定放大器基光电读出电路,用于激光脉冲能量变化的高灵敏度差分测量

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This paper presents a complete integrable optoelectronic architecture based on a current-mode photodiode bridge readout circuit, including an ad-hoc Lock-In Amplifier (LIA), that performs differential measurements of the energy variations of nanosecond laser pulses. The bridge hosts two Si photodiodes: one is used as the reference signal probing the energy of the laser pulse travelling along an unperturbed optical path and the other measures the energy variations eventually occurred in the laser pulses propagating along the sample optical path. The differential measurements are accomplished by detecting the pulsed currents (i.e., the replica of the laser pulses) generated by the two photodiodes obtaining a single output pulsed voltage measured through the LIA. The electronic circuitry allows achieving the initial photodiode bridge balancing condition by variable control voltages. The entire system has been designed for low-voltage, low-power and high-speed operations (i.e., large bandwidth) and its features can be simply optimized as a function of the laser pulse width (e.g., in the nanosecond and sub-nanosecond regime) and repetition rate (e.g., from few Hz up to few MHz). The complete readout circuit was characterized by performing optical measurements employing 10 ns laser pulses at a repetition rate of 20 Hz. The maximum detection sensitivity was 65.9 mV/fJ with the minimum resolution of 1.5×10~(-3) fJ. These results show that the system allows to achieve a maximum detection sensitivity enhancement equal to 11763 with respect to the use of only a commercial LIA under the same experimental conditions.
机译:本文介绍了基于电流模式光电二极管桥读出电路的完整可分配的光电架构,包括ad-hoc锁定放大器(Lia),其执行纳秒激光脉冲的能量变化的差分测量。桥接器托管两个Si光电二极管:一个用作探测沿着不受所触扰的光路行进的激光脉冲的能量的参考信号,另一个测量最终发生在沿着样本光路的激光脉冲中发生的能量变化。通过检测由两个光电二极管产生的脉冲电流(即,激光脉冲的复制品)来实现差分测量,从而获得通过LIA测量的单个输出脉冲电压。电子电路允许通过可变控制电压实现初始光电二极管桥平衡条件。整个系统专为低电压,低功耗和高速操作(即,大带宽),其特征可以简单地优化为激光脉冲宽度(例如,在纳秒和亚纳秒中制度)和重复率(例如,从几个Hz到几乎没有MHz)。完整的读出电路的特征在于,通过以20Hz的重复速率执行采用10ns激光脉冲的光学测量。最大检测灵敏度为65.9 MV / FJ,最小分辨率为1.5×10〜(-3)FJ。这些结果表明,该系统允许在相同的实验条件下实现仅使用商业LIA的最大检测灵敏度增强等于11763。

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