首页> 外文会议>Conference on Space Telescopes and Instrumentation >Slitless spectroscopy with the James Webb Space Telescope Near-Infrared Camera (JWST NIRCam)
【24h】

Slitless spectroscopy with the James Webb Space Telescope Near-Infrared Camera (JWST NIRCam)

机译:无缝光谱与James Webb Space望远镜近红外相机(JWST Nircam)

获取原文

摘要

The James Webb Space Telescope near-infrared camera (JWST NIRCam) has two 2'.2 × 2'.2 fields of view that are capable of either imaging or spectroscopic observations. Either of two R ~ 1500 grisms with orthogonal dispersion directions can be used for slitless spectroscopy over λ = 2.4 - 5.0 μm in each module, and shorter wavelength observations of the same fields can be obtained simultaneously. We present the latest predicted grism sensitivities, saturation limits, resolving power, and wavelength coverage values based on component measurements, instrument tests, and end-to-end modeling. Short wavelength (0.6 - 2.3 μm) imaging observations of the 2.4 - 5.0 μm spectroscopic field can be performed in one of several different filter bands, either in-focus or defocused via weak lenses internal to NIRCam. Alternatively, the possibility of 1.0 - 2.0 μm spectroscopy (simultaneously with 2.4 - 5.0 μm) using dispersed Hartmann sensors (DHSs) is being explored. The grisms, weak lenses, and DHS elements were included in NIRCam primarily for wavefront sensing purposes, but all have significant science applications. Operational considerations including subarray sizes, and data volume limits are also discussed. Finally, we describe spectral simulation tools and illustrate potential scientific uses of the grisms by presenting simulated observations of deep extragalactic fields, galactic dark clouds, and transiting exoplanets.
机译:James Webb Space望远镜近红外线相机(JWST Nircam)有两个2'.2×2'.2的视野,其能够进行成像或光谱观察。具有正交色散方向的两个R〜1500族主义中的任一个可用于每个模块中的狭缝光谱,并且可以同时获得相同字段的较短波长观察。我们基于组件测量,仪器测试和端到端建模,提供了最新的预测的Grism敏感性,饱和限制,解析功率和波长覆盖值。 2.4 - 5.0μm光谱场的短波长(0.6 - 2.3μm)成像观察的观察可以在几种不同的过滤器带中的一个中进行,无论是通过Nircam内部的弱镜片焦点或散焦。或者,正在探索使用分散的Hartmann传感器(DHSS)的1.0-2.0μm光谱(同时与2.4-5.0μm)的可能性。 Gromis,弱镜片和DHS元素主要包括在Nircam中,主要用于波前传感目的,但所有这些都具有重要的科学应用。还讨论了包括子阵列大小和数据量限制的操作考虑因素。最后,我们描述了光谱仿真工具,并通过呈现深层胶质田,银河乌云和过度的外部产前的模拟观察来说明生物的潜在科学用途。

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