首页> 外文期刊>Journal of Modern Optics >Single-photon counting at 950-1300 nm: using InGaAsP photocathode-GaAs avalanche diode hybrid photomultiplier tubes
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Single-photon counting at 950-1300 nm: using InGaAsP photocathode-GaAs avalanche diode hybrid photomultiplier tubes

机译:950-1300 nm处的单光子计数:使用InGaAsP光电阴极-GaAs雪崩二极管混合光电倍增管

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We describe the single-photon counting performance of a hybrid photomultiplier tube (HPMT) near-infrared (950-1300 nm) detector with a transfered electron InGaAsP photocathode and a GaAs Schottky avalanche diode anode. These devices have a lower photoelectron multiplication gain than conventional photomultiplier tubes, but offer a greater linear dynamic range and electrical bandwidth. With the use of a low-noise preamplifier, they can detect single photons with a greater than 20% quantum efficiency (QE) and a reasonably low dark-noise count rate. The avalanche diode at the anode operates in a low gain analog mode and has no afterpulsing. As a result, these HPMTs can detect single photons continuously at high count rates without gating. The relatively large photocathode active area (1 mm diameter) is also attractive to many applications including laser altimetry, ranging, and free-space communications through the atmosphere. We measured 25% photocathode QE and nearly the same single-photon detection efficiency at 1064 nm wavelength with a dark count rate of 60,000 per second at -22℃. The output pulse width in response to single-photon detection is about 0.8 ns. The maximum count rate exceeded 100 million counts per second and was limited only by the speed of the electronics. The rms timing jitter of the HPMT output was measured to be about 0.5 ns. The jitter is dominated by the electron diffusion time within the photocathode and can be improved by reducing the photocathode thickness at a small loss in photocathode QE. We evaluated several of these HPMTs and detailed measurement results are reported in this paper.
机译:我们描述了具有转移电子InGaAsP光电阴极和GaAs肖特基雪崩二极管阳极的混合光电倍增管(HPMT)近红外(950-1300 nm)检测器的单光子计数性能。与传统的光电倍增管相比,这些器件的光电子倍增增益更低,但具有更大的线性动态范围和电带宽。通过使用低噪声前置放大器,他们可以检测出具有大于20%量子效率(QE)和相当低的暗噪声计数率的单光子。阳极上的雪崩二极管以低增益模拟模式运行,并且没有后脉冲。结果,这些HPMT可以在不进行门控的情况下以高计数率连续检测单个光子。相对较大的光阴极有效面积(直径1毫米)也吸引了许多应用,包括激光测高,测距和通过大气的自由空间通信。在-22℃下,我们在1064 nm波长下测量了25%的光电阴极QE和几乎相同的单光子检测效率,暗计数率为每秒60,000。响应于单光子检测的输出脉冲宽度约为0.8 ns。最大计数率超过每秒1亿个计数,并且仅受电子设备速度的限制。 HPMT输出的均方根时序抖动测得约为0.5 ns。抖动受光电阴极内电子扩散时间的支配,并且可以通过在光电阴极QE中损失很小的情况下减小光电阴极的厚度来改善抖动。我们评估了其中几种HPMT,并在本文中报告了详细的测量结果。

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