首页> 外文会议>Society of Photo-optical Instrumentation Engineers conference on Electro-optical and infrared systems >A Novel SWIR Detector with an Ultra-high Internal Gain and Negligible Excess Noise
【24h】

A Novel SWIR Detector with an Ultra-high Internal Gain and Negligible Excess Noise

机译:一种新的SWIR探测器,具有超高内部增益和忽略的噪音

获取原文

摘要

Short wave infrared (SWIR) imaging systems have several advantages due to the spectral content of the nightglow and better discrimination against camouflage. Achieving single photon detection sensitivity can significantly improve the image quality of these systems. However, the internal noise of the detector and readout circuits are significant barriers to achieve this goal. One can prove that the noise limitations of the readout can be alleviated, if the detector exhibits sufficiently high internal gain. Unfortunately, the existing detectors with internal gain have a very high noise as well. Here we present the recent results from our novel FOcalized Carrier augmented Sensor (FOCUS). It utilizes very high charge compression into a nano-injector, and subsequent carrier injection to achieve high quantum efficiency and high sensitivity at short infrared at room temperature. We obtain internal gain values exceeding several thousand at bias values of less than 1 volt. The current responsivity at 1.55 |im is more than 1500 A/W, and the noise equivalent power (NEP) is less that 0.5 xlO ~15 W/Hz'/2 at room temperature. These are significantly better than the performance of the existing room temperature devices with internal gain. Also, unlike avalanche-based photodiodes, the measured excess noise factor for our device is near unity, even at very high gain values. The stable gain of the device combined with the low operating voltage are unique advantages of this technology for high-performance SWIR imaging arrays.
机译:短波红外(SWIR)成像系统由于夜总会的光谱含量和更好地对伪装的歧视而具有若干优点。实现单光子检测灵敏度可以显着提高这些系统的图像质量。然而,探测器和读出电路的内部噪声是实现这一目标的重要障碍。如果检测器表现出足够高的内部增益,则可以证明可以缓解读出的噪声限制。不幸的是,具有内部增益的现有探测器也具有很高的噪音。在这里,我们提出了我们的新型聚焦载体增强传感器(焦点)的最新结果。它利用非常高的电荷压缩进入纳米注射器,随后的载体喷射,以在室温下在短红外线实现高量子效率和高灵敏度。我们在偏置值低于1伏的偏差值下获得超过数千的内部增益值。 1.55 | IM的电流响应度大于1500 A / W,噪声等效功率(NEP)在室温下较0.5 XLO〜15 W / Hz'/ 2。这些明显优于现有室温装置的内部增益的性能。此外,与雪崩的光电二极管不同,我们的设备的测量过量噪声系数近乎统一,即使在非常高的增益值下也是如此。器件的稳定增益与低工作电压相结合,是该技术的独特优势,适用于高性能SWIR成像阵列。

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