首页> 外文会议>Conference on Photon Counting Applications, Quantum Optics, and Quantum Cryptography >Photon Counting Performance Measurements of Transfer Electron InGaAsP Photocathode Hybrid Photomultiplier Tubes at 1064 nm Wavelength
【24h】

Photon Counting Performance Measurements of Transfer Electron InGaAsP Photocathode Hybrid Photomultiplier Tubes at 1064 nm Wavelength

机译:传输电子InGaAsP光电阴极混合光电倍增管在1064 nm波长的光子计数性能测量

获取原文

摘要

We report the test results of a hybrid photomultiplier tube (HPMT) with a transfer electron (TE) InGaAsP photocathode and GaAs Schottky avalanche photodiode (APD) anode. Unlike Geiger mode InGaAsP APDs, these HPMTs (also known as intensified photodiode (IPD), vacuum APD, or hybrid photodetector) operate in linear mode without the need for quenching and gating. Their greatest advantages are wide dynamic range, high speed, large photosensitive area, and potential for photon counting and analog detection dual mode operation. The photon detection efficiency we measured was 25% at 1064 nm wavelength with a dark count rate of 60,000/s at -22 degrees Celsius. The output pulse width in response to a single photon detection is about 0.9 ns. The maximum count rate was 90 Mcts/s and was limited solely by the speed of the discriminator used in the measurement (10 ns dead time). The spectral response of these devices extended from 900 to 1300 nm. We also measured the HPMT response to 60 ps laser pulses. The average output pulse amplitude increased monotonically with the input pulse energy, which suggested that we can resolve photon number in an incident pulse. The jitter of the HPMT output was found to be about 0.5 ns standard deviation and depended on bias voltage applied to the TE photocathode. To our knowledge, these HPMTs are the most sensitive non gating photon detectors at 1064 nm wavelength, and they will have many applications in laser altimeters, atmospheric lidars, and free space laser communication systems.
机译:我们报告了带有转移电子(TE)InGaAsP光电阴极和GaAs肖特基雪崩光电二极管(APD)阳极的混合光电倍增管(HPMT)的测试结果。与Geiger模式的InGaAsP APD不同,这些HPMT(也称为增强型光电二极管(IPD),真空APD或混合光电探测器)在线性模式下运行,而无需淬灭和门控。它们的最大优点是动态范围宽,速度快,感光面积大,并且具有光子计数和模拟检测双模式操作的潜力。我们测得的光子检测效率在1064 nm波长下为25%,在-22摄氏度下的暗计数率为60,000 / s。响应单个光子检测的输出脉冲宽度约为0.9 ns。最大计数速率为90 Mcts / s,并且仅受测量中使用的鉴别器速度的限制(死区时间为10 ns)。这些设备的光谱响应从900 nm扩展到1300 nm。我们还测量了HPMT对60 ps激光脉冲的响应。平均输出脉冲幅度随输入脉冲能量而单调增加,这表明我们可以解析入射脉冲中的光子数。发现HPMT输出的抖动约为0.5 ns标准偏差,并且取决于施加到TE光电阴极的偏置电压。据我们所知,这些HPMT是1064 nm波长下最灵敏的非门控光子探测器,它们将在激光高度计,大气激光雷达和自由空间激光通信系统中有许多应用。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号