首页> 外文会议>IEEE Aerospace Conference >Gallium Nitride Photodetector Measurements of UV Emission from a Gaseous CH4/O2 Hybrid Rocket Igniter Plume
【24h】

Gallium Nitride Photodetector Measurements of UV Emission from a Gaseous CH4/O2 Hybrid Rocket Igniter Plume

机译:氮化镓光电探测器对气态CH4 / O2混合火箭点火器羽流中UV发射的测量

获取原文

摘要

Owing to its wide (3.4 eV) and direct-tunable band gap, gallium nitride (GaN) is an excellent material platform to make UV photo detectors. GaN is also stable in radiation-rich and high-temperature environments, which makes photo detectors fabricated using this material useful for in-situ flame detection and combustion monitoring. In this paper, we use a GaN photo detector to measure ultraviolet (UV) emissions from a hybrid rocket motor igniter plume. The GaN photo detector, built at the Stanford Nanofabrication Facility, has 5 μm wide regions of AlGaN/GaN two-dimensional electron gas (2DEG)electrodes spaced by intrinsic GaN channels. In most applications, the ideal photodetector would exhibit a high responsivity to maximize the signal, in addition to a low dark current to minimize quiescent power. A performance metric which simultaneously captures these two values is the normalized photocurrent-to-dark current ratio (NPDR), defined as the ratio of responsivity to dark current, with units of W-1. The NPDR of our device is record-high with a value of 6 × 1014 W-1 and the UV-to-visible rejection ratio is 4 × 106. The high rejection ratio is essential as it eliminates cross-sensitivity of the detector to visible light. The spectral response can be modeled as a rectangular window with a peak responsivity of 7,800 AW-1 at 362 nm and a bandwidth of 16 nm. The photo detector shows operation at high temperatures (up to 250°C). The NPDR still remains above 109 W-1 at the higher temperatures, and the peak wavelength shifts from 362 nm to 375 nm at 250°C. The photo detector was placed at three radial distances ( 3'',5.5'', and 7'') from the base of the igniter plume and the oxidizer-to-fuel ratio (O2/CH4) was varied to alter the size and strength of the plume. The current measured from the device was proportional to the intensity of the emission from the plume. The data demonstrates a clear trend of increasing current with increasing fuel concentration. Further, the current decreases with larger separation between the photo detector and the plume. A calibration curve constructed from the responsivity measurements taken over four orders of magnitude was used to convert the current into incident optical power. By treating the plume as a black body, and calculating a radiative configuration factor corresponding to the geometry of the plume and the detector, we calculated average plume temperatures at each of the three oxidizer-to-fuel ratios. The estimated plume temperatures were between 850 and 950 K for all three combustion conditions. The temperature is roughly invariant for a fixed fuel concentration for the three tested distances. These data demonstrate the functionality of GaN as a material platform for use in harsh environment flame monitoring.
机译:氮化镓(GaN)由于具有宽(3.4 eV)和直接可调的带隙,是制造UV光电探测器的绝佳材料平台。 GaN在富含辐射的高温环境中也很稳定,这使得使用这种材料制造的光电探测器可用于原位火焰探测和燃烧监控。在本文中,我们使用GaN光电探测器来测量混合火箭发动机点火器羽流中的紫外线(UV)排放。在斯坦福大学纳米制造工厂建立的GaN光检测器具有5μm宽的AlGaN / GaN二维电子气(2DEG)电极区域,这些电极由本征GaN通道隔开。在大多数应用中,理想的光电检测器除了具有低的暗电流以最小化静态功率外,还具有高的响应度以使信号最大化。同时捕获这两个值的性能指标是归一化光电流与暗电流之比(NPDR),其定义为响应度与暗电流之比,单位为W -1 。我们设备的NPDR达到了创纪录的高,值为6×10 14 w ^ -1 紫外线与可见光的排斥比为4×10 6 。高抑制比至关重要,因为它消除了检测器对可见光的交叉敏感度。光谱响应可以建模为一个矩形窗口,峰值响应率为7,800 AW -1 在362 nm和16 nm的带宽。光电探测器显示在高温(最高250°C)下工作。 NPDR仍保持在10以上 9 w ^ -1 在较高温度下,峰值波长在250°C时从362 nm转变为375 nm。将光电探测器放置在三个径向距离处(3 '' ,5.5 '' 和7 '' )从点火剂羽流的底部和氧化剂与燃料的比例(O 2 /通道 4 )进行了更改,以改变羽流的大小和强度。从设备测得的电流与来自羽流的发射强度成正比。数据表明,随着燃料浓度的增加,电流明显增加。此外,电流随着光电检测器和羽流之间的较大间隔而减小。根据在四个数量级上获得的响应度测量结果构建的校准曲线用于将电流转换为入射光功率。通过将烟羽视为黑体,并计算与烟羽和检测器的几何形状相对应的辐射构型因子,我们计算了三种氧化剂/燃料比中每一个的平均烟羽温度。对于所有三种燃烧条件,估计的羽流温度在850至950 K之间。对于三个测试距离,对于固定的燃料浓度,温度大致不变。这些数据证明了GaN作为用于严酷环境火焰监测的材料平台的功能。

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