首页> 外文会议> >Large format long-wavelength GaAs/AlGaAs multi-quantum well infrared detector arrays for astronomy
【24h】

Large format long-wavelength GaAs/AlGaAs multi-quantum well infrared detector arrays for astronomy

机译:用于天文学的大幅面长波长GaAs / AlGaAs多量子阱红外探测器阵列

获取原文

摘要

A long-wavelength large format quantum well infrared photodetector (QWIP) focal plane array has been successfully used in a ground based astronomy experiment. QWIP arrays afford greater flexibility than the usual extrinsically doped semiconductor infrared (IR) arrays. The wavelength of the peak response and cutoff can be continuously tailored over a range wide enough to enable light detection at any wavelength range between 6-20 /spl mu/m. The spectral band width of these detectors can be tuned from narrow (/spl Delta//spl lambda///spl lambda/ /spl sim/ 10%) to wide (/spl Delta//spl lambda///spl lambda/ /spl sim/ 40 %) allowing various applications. Also, QWIP device parameters can be optimized to achieve extremely high performances at lower operating temperatures (/spl sim/ 30 K) due to exponential suppression of dark current. Furthermore, QWIPs offer low cost per pixel and highly uniform large format focal plane arrays (FPAs) mainly due to mature GaAs/AlGaAs growth and processing technologies. The other advantages of GaAs/AlGaAs based QWIPs are higher yield, lower 1/f noise and radiation hardness. Recently, we operated an infrared camera with a 256/spl times/256 QWIP array sensitive at 8.5 /spl mu/m at the prime focus of the 5 m Hale telescope, obtaining the images. The remarkable noise stability - and low 1/f noise - of QWIP focal plane arrays enable cameras to operate by modulating the optical signal with a nod period up to 100 s. A 500 s observation on dark sky renders a flat image with little indication of the low spatial frequency structures associated with imperfect sky subtraction or detector drifts.
机译:长波大幅面量子阱红外光电探测器(QWIP)焦平面阵列已成功地用于基于地面的天文学实验中。与常规的外部掺杂半导体红外(IR)阵列相比,QWIP阵列具有更大的灵活性。可以在足够宽的范围内连续调整峰值响应和截止波长,以实现在6-20 / spl mu / m之间的任何波长范围内进行光检测。这些检测器的光谱带宽可以从窄(/ spl Delta // spl lambda /// spl lambda / / spl sim / 10%)调整到宽(/ spl Delta // spl lambda /// spl lambda / / spl sim / 40%)允许各种应用。而且,由于暗电流的指数抑制,可以优化QWIP设备参数以在较低的工作温度(/ spl sim / 30 K)下实现极高的性能。此外,主要由于成熟的GaAs / AlGaAs生长和处理技术,QWIP提供了较低的每像素成本和高度均匀的大幅面焦平面阵列(FPA)。基于GaAs / AlGaAs的QWIP的其他优势是更高的产量,更低的1 / f噪声和辐射硬度。最近,我们在5 m Hale望远镜的主要焦点上以8.5 / spl mu / m的灵敏度操作了256 / spl次/ 256 QWIP阵列的红外热像仪,获得了图像。 QWIP焦平面阵列具有出色的噪声稳定性-和低的1 / f噪声-使照相机能够以高达100 s的节拍周期调制光信号,从而使相机能够工作。在黑暗的天空上进行500 s的观察会呈现出平坦的图像,几乎看不出与不完美的天空减去或探测器漂移相关的低空间频率结构。

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