首页> 外文会议> >Compact Reconnaissance Imaging Spectrometer for Mars (CRISM), Characterization Results for Instrument and Focal Plane Subsystems
【24h】

Compact Reconnaissance Imaging Spectrometer for Mars (CRISM), Characterization Results for Instrument and Focal Plane Subsystems

机译:紧凑型火星侦察成像光谱仪(CRISM),仪器和焦平面子系统的表征结果

获取原文
获取原文并翻译 | 示例

摘要

The Compact Reconnaissance Imaging Spectrometer for Mars (CRISM) will launch in 2005 on the Mars Reconnaissance Orbiter (MRO) mission, with its primary science objective to characterize sites with aqueous mineral deposits hyperspectraLly at high spatial resolution. CRISM's two Offner relay spectrometers share a single entrance slit with a dichroic beamsplitter. The IR focal plane contains a 640 (spatial) x 480 (spectral) HgCdTe FPA with a 980 nm to 3960 nm spectral bandpass. It is cooled to 110 K to minimize dark current, and coupled to a 28 mm long cold shield to minimize thermal background. The spectrometer housing is cooled to -90C for the same reason. A three-zone IR filter consisting of two broadband filters and a linear variable filter overlays the IR focal plane, eliminating multiple grating orders and providing additional attenuation of the thermal background. The visible focal plane contains a 640 (spatial) x 480 (spectral) silicon photodiode array, with a 380-1050 nm spectral bandpass occupying approximately 106 rows of the detector. A two-zone filter comprised of two different Schott glasses eliminates multiple grating orders. The two focal planes together cover 544 spectral channels with a dispersion of 6.55 nm/channelin the VNIR and 6.63 nm/channel in the IR. The optics and focal planes are gimbaled, and a pre-programmed slew can be used to remove groundtrack motion while superimposing a scan across a target. CRISM will operate in two basic modes: a scanning, high resolution mode to hyperspectrally map small, targeted areas of high scientific interest, and a fixed, nadir-pointed, lower resolution pixel-binned mode using selected wavelength channels to obtain near-global coverage to find targets. Preliminary performance of the CRISM instrument is presented, and is compared with prior system design predictions.
机译:紧凑型火星侦察成像成像光谱仪(CRISM)将于2005年发射,是火星侦察轨道飞行器(MRO)的一项任务,其主要科学目标是以高空间分辨率对含水矿物矿床进行高光谱表征。 CRISM的两个Offner中继光谱仪与一个二向色分光镜共享一个入口狭缝。红外焦平面包含640(空间)×480(光谱)HgCdTe FPA,具有980 nm至3960 nm的光谱带通。它被冷却到110 K以最小化暗电流,并与28毫米长的冷屏蔽罩相结合以最小化热本底。出于相同的原因,光谱仪外壳被冷却到-90C。由两个宽带滤光片和一个线性可变滤光片组成的三区红外滤光片覆盖在红外焦平面上,从而消除了多个光栅级数,并提供了对热本底的额外衰减。可见焦平面包含一个640(空间)x 480(光谱)硅光电二极管阵列,其380-1050 nm光谱带通大约占据检测器的106行。由两个不同的肖特玻璃组成的两区滤光镜消除了多个光栅级数。两个焦平面一起覆盖544个光谱通道,VNIR中的色散为6.55 nm /通道,IR中的色散为6.63 nm /通道。光学装置和焦平面是万向架,并且可以使用预编程的回转装置来消除地面轨迹运动,同时在整个目标上叠加一次扫描。 CRISM将以两种基本模式运行:一种扫描高分辨率模式,用于对高科学兴趣的小目标区域进行高光谱映射;以及一种固定,最低点,分辨率较低的像素合并模式,该模式使用选定的波长通道来获得近乎全局的覆盖范围寻找目标。介绍了CRISM仪器的初步性能,并将其与先前的系统设计预测进行了比较。

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