Lockerbie N A, Tokmakov K V
SUPA (Scottish Universities Physics Alliance) Department of Physics, University of Strathclyde, 107 Rottenrow, Glasgow G4 0NG, United Kingdom.
Rev Sci Instrum. 2014 Nov;85(11):114705. doi: 10.1063/1.4900955.
This paper describes the design and performance of an extremely low-noise differential transimpedance amplifier, which takes its two inputs from separate photodiodes. The amplifier was planned to serve as the front-end electronics for a highly sensitive shadow-displacement sensing system, aimed at detecting very low-level "Violin-Mode" (VM) oscillations in 0.4 mm diameter by 600 mm long fused-silica suspension fibres. Four such highly tensioned fibres support the 40 kg test-masses/mirrors of the Advanced Laser Interferometer Gravitational wave Observatory interferometers. This novel design of amplifier incorporates features which prevent "noise-gain peaking" arising from large area photodiode (and cable) capacitances, and which also usefully separate the DC and AC photocurrents coming from the photodiodes. In consequence, the differential amplifier was able to generate straightforwardly two DC outputs, one per photodiode, as well as a single high-gain output for monitoring the VM oscillations-this output being derived from the difference of the photodiodes' two, naturally anti-phase, AC photocurrents. Following a displacement calibration, the amplifier's final VM signal output was found to have an AC displacement responsivity at 500 Hz of (9.43 ± 1.20) MV(rms) m(-1)(rms), and, therefore, a shot-noise limited sensitivity to such AC shadow- (i.e., fibre-) displacements of (69 ± 13) picometres/√Hz at this frequency, over a measuring span of ±0.1 mm.
本文描述了一种极低噪声差分跨阻放大器的设计与性能,该放大器的两个输入分别来自独立的光电二极管。该放大器计划用作高灵敏度阴影位移传感系统的前端电子设备,旨在检测直径0.4毫米、长600毫米的熔融石英悬丝中的极低水平“小提琴模式”(VM)振荡。四条这样高度张紧的悬丝支撑着高级激光干涉引力波天文台干涉仪的40千克测试质量块/反射镜。这种新颖的放大器设计具有防止因大面积光电二极管(和电缆)电容引起“噪声增益峰值”的特性,并且还能有效地分离来自光电二极管的直流和交流光电流。因此,差分放大器能够直接产生两个直流输出,每个光电二极管一个,以及一个用于监测VM振荡的高增益输出——该输出源自光电二极管的两个自然反相交流光电流的差值。经过位移校准后,发现放大器的最终VM信号输出在500赫兹时的交流位移响应率为(9.43±1.20)毫伏(均方根值)/米(均方根值),因此,在该频率下,对于此类交流阴影(即悬丝)位移,在±0.1毫米的测量范围内,散粒噪声限制灵敏度为(69±13)皮米/√赫兹。