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Commissioning of cryogenic preamplifiers for SAPHIRA detectors

机译:Saphira探测器的低温前置放大器调试

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SAPHIRA detectors, which are HgCdTe linear avalanche photodiode arrays manufactured by Leonardo, enable high frame rate, high sensitivity, low noise, and low dark current imaging at near-infrared wavelengths. During all University of Hawaii Institute for Astronomy lab testing and observatory deployments of SAPHIRA detectors, there was approximately one meter of cables between the arrays and the readout controllers. The output drivers of the detectors struggled to stably send signals over this length to the readout controllers. As a result, voltage oscillations caused excess noise that prevented us from clocking much faster than 1 MHz. Additionally, during some deployments, such as at the SCExAO instrument at Subaru Telescope, radio-frequency interference from the telescope environment produced noise many times greater than what we experienced in the lab. In order to address these problems, collaborators at the Australia National University developed a cryogenic preamplifier system that holds the detector and buffers I he signals from its outputs. During lab testing at 1 MHz clocking speeds, the preamplifiers reduced the read noise by 45% relative to data collected using the previous JK Henriksen detector mount. Additionally, the preamplifiers enabled us to increase the clocking frequency to 2 MHz, effectively doubling the frame rate to 760 Hz for a full (320x256 pixel) frame or 3.3 kHz for a 128×128 pixel subarray. Finally, the preamplifiers reduced the noise observed in the SCExAO environment by 65% (to essentially the same value observed in the lab) and eliminated the 32-pixel raised bars characteristic of radio-frequency interference that we previous observed there.
机译:Saphira探测器是由Leonardo制造的HGCDTE线性雪崩光电二极管阵列,在近红外波长下实现高帧速率,高灵敏度,低噪声和低暗电流成像。在夏威夷大学天文学实验室测试和天文台探测器的观测站部署期间,阵列之间大约有一米电缆和读出控制器。检测器的输出驱动器努力将信号稳定地向读出控制器发送信号。结果,电压振荡引起过多的噪声,防止我们从1 MHz更快地计时。此外,在某些部署期间,例如在Subaru望远镜的Scexao仪器处,望远镜环境的射频干扰产生噪音大于我们在实验室所经历的次数。为了解决这些问题,澳大利亚国立大学的合作者开发了一个低温前置放大器系统,该系统占据了检测器和缓冲器,我从输出中发出信号。在实验室测试期间,在1 MHz时钟速度下,前置放大器相对于使用前一个JK Henriksen Detector Mount收集的数据将读取噪声降低45%。另外,前置放大器使我们能够将时钟频率增加到2 MHz,有效地将帧速率加倍到760Hz,适用于128×128像素子阵列的3.3kHz的完整(320x256像素)帧或3.3kHz。最后,前置放大器将在Scexao环境中观察到的噪声减少了65%(在实验室中观察到的基本相同的值),并消除了我们之前观察到的射频干扰特征的32像素升高的条形图。

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