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Fast photomultiplier tube gating system for underwater laser detector

机译:用于水下激光探测器的快速光电倍增管门控系统

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Laser will attenuate during its propagation in water and also be backward scattered by water when it is used to detect bubbles in the ocean. Meanwhile backward scattering intensity of the bubbles is feeble, its dynamic range reaches to the order of 6, which saturates PMT and its post-treatment circuit. Timely gating system is used to solve the problem. The system contains pulsed laser and gating PMT receiver. The wavelength of the laser is 532nm, with pulse width of several nanometers. Its operational delay is matched with the time period between laser traveling forward and back after scattered by the target. By doing this, the light scattered by other object is eliminated, dynamic range of the signal reduces, and consequently SNR increases. In order to avoid Signal Induced Noise(SIN),we choose PMT R1333 having no HA coating. TTL logical level, which is used as gating signal, controls the first dynode voltage of PMT to implement gating. Gating speed is about 100ns, of which the width is tunable. By carefully designing the electronic system, SNR is eliminated to a level as low as possible, and the output signal of PMT is fast integrated in order to reduce the influences of signal induced by opening the gate.
机译:激光在水中传播时会衰减,当用于检测海洋中的气泡时,激光还会被水向后散射。同时气泡的向后散射强度微弱,其动态范围达到6的数量级,这使PMT及其后处理电路饱和。及时的门控系统用于解决该问题。该系统包含脉冲激光和门控PMT接收器。激光的波长为532nm,脉冲宽度为几纳米。其操作延迟与激光被目标散射后向前和向后传播之间的时间段相匹配。通过这样做,消除了由其他物体散射的光,减小了信号的动态范围,并因此提高了SNR。为了避免信号引起的噪声(SIN),我们选择没有HA涂层的PMT R1333。用作门控信号的TTL逻辑电平控制PMT的第一个倍增极电压以实现门控。门控速度约为100ns,其宽度可调。通过精心设计电子系统,可以将SNR降低到尽可能低的水平,并快速集成PMT的输出信号,以减少因打开门而引起的信号影响。

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