首页> 外文会议>Conference on ground-based and airborne instrumentation for astronomy >Trade-off study for high resolution spectroscopy in the near infrared with ELT telescopes: seeing-limited vs. diffraction limited instruments
【24h】

Trade-off study for high resolution spectroscopy in the near infrared with ELT telescopes: seeing-limited vs. diffraction limited instruments

机译:ELT望远镜在近红外高分辨率光谱学上的权衡研究:视力限制与衍射限制仪器

获取原文

摘要

HIRES, a high resolution spectrometer, is one of the first five instruments foreseen in the ESO roadmap for the E-ELT. This spectrograph should ideally provide full spectral coverage from the UV limit to 2.5 microns, with a resolving power from R~10,000 to R~100,000. At visual/blue wavelengths, where the adaptive optics (AO) cannot provide an efficient light-concentration, HIRES will necessarily be a bulky, seeing-limited instrument. The fundamental question, which we address in this paper, is whether the same approach should be adopted in the near-infrared range, or HIRES should only be equipped with compact infrared module(s) with a much smaller aperture, taking advantage of an AO-correction. The main drawbacks of a seeing-limited instrument at all wavelengths are: ⅰ) Lower sensitivities at wavelengths dominated by thermal background (red part of the K-band). ⅱ) Much higher volumes and costs for the IR spectrograph module(s). The main drawbacks of using smaller, AO-fed IR module(s) are: ⅰ) Performances rapidly degrading towards shorter wavelengths (especially J e Y bands), ⅱ) Different spatial sampling of extended objects (the optical module see a much larger area on the sky). In this paper we perform a trade-off analysis and quantify the various effects that contribute to improve or deteriorate the signal to noise ratio. In particular, we evaluate the position of the cross-over wavelength at which AO-fed instruments starts to outperform seeing-limited instruments. This parameter is of paramount importance for the design of the part of HIRES covering the K-band.
机译:HIRES是一种高分辨率光谱仪,是E-ELT ESO路线图中预见的前五种仪器之一。理想情况下,该光谱仪应能提供从UV极限到2.5微米的完整光谱范围,分辨力从R〜10,000到R〜100,000。在可见光/蓝光波长下,自适应光学系统(AO)无法提供有效的聚光效果,HIRES必定是笨重的,视力受限的仪器。我们在本文中要解决的基本问题是,是否应在近红外范围内采用相同的方法,还是HIRES应该仅配备孔径较小的紧凑型红外模块,并利用AO优势-更正。在所有波长下视力受限的仪器的主要缺点是:ⅰ)在以热本底(K波段的红色部分)为主的波长下,灵敏度较低。 ⅱ)红外光谱仪模块的体积和成本更高。使用较小的,由AO馈送的红外模块的主要缺点是:ⅰ)性能朝着较短的波长(尤其是J e Y波段)迅速下降,ⅱ)扩展物体的不同空间采样(光学模块看到的面积更大)在天空上)。在本文中,我们进行了权衡分析并量化了有助于改善或降低信噪比的各种影响。特别是,我们评估了AO馈送的仪器开始胜过视力受限的仪器的交叉波长的位置。该参数对于HIRES覆盖K频段的部分的设计至关重要。

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