首页> 外文会议>Conference on ground-based and airborne instrumentation for astronomy VI >300 Nights of Science with IGRINS at McDonald Observatory
【24h】

300 Nights of Science with IGRINS at McDonald Observatory

机译:麦当劳天文台与IGRINS共同进行的300个科学之夜

获取原文

摘要

The Immersion Grating Infrared Spectrometer (IGRINS) is a revolutionary instrument that exploits broad spectral coverage at high-resolution in the near-infrared. IGRINS employs a silicon immersion grating as the primary disperser, and volume-phase holographic gratings cross-disperse the H and K bands onto Teledyne Hawaii-2RG arrays. The use of an immersion grating facilitates a compact cryostat while providing simultaneous wavelength coverage from 1.45 - 2.5 μm. There are no cryogenic mechanisms in IGRINS and its high-throughput design maximizes sensitivity. IGRINS on the 2.7 meter Harlan J. Smith Telescope at McDonald Observatory is nearly as sensitive as CRIRES at the 8 meter Very Large Telescope. However, IGRINS at R≈45,000 has more than 30 times the spectral grasp of CRIRES in a single exposure. Here we summarize the performance of IGRINS from the first 300 nights of science since commissioning in summer 2014. IGRINS observers have targeted solar system objects like Pluto and Ceres, comets, nearby young stars, star forming regions like Taurus and Ophiuchus, the interstellar medium, photodissociation regions, the Galactic Center, planetary nebulae, galaxy cores and super novae. The rich near-infrared spectra of these objects motivate unique science cases, and provide information on instrument performance. There are more than ten submitted IGRINS papers and dozens more in preparation. With IGRINS on a 2.7m telescope we realize signal-to-noise ratios greater than 100 for K=10.3 magnitude sources in one hour of exposure time. Although IGRINS is Cassegrain mounted, instrument flexure is sub-pixel thanks to the compact design. Detector characteristics and stability have been tested regularly, allowing us to adjust the instrument operation and improve science quality. A wide variety of science programs motivate new tools for analyzing high-resolution spectra including multiplexed spectral extraction, atmospheric model fitting, rotation and radial velocity, unique line identification, and circumstellar disk modeling. Here we discuss details of instrument performance, summarize early science results, and show the characteristics of IGRINS as a versatile near-infrared spectrograph and forerunner of future silicon immersion grating spectrographs like iSHELL and GMTNIRS.
机译:浸没式光栅红外光谱仪(IGRINS)是一种革命性的仪器,可在近红外的高分辨率下利用宽广的光谱范围。 IGRINS使用硅浸没光栅作为主要分散器,体相全息光栅将H和K谱带交叉分散到Teledyne Hawaii-2RG阵列上。浸没光栅的使用有助于紧凑型低温恒温器,同时提供1.45-2.5μm的同时波长范围。 IGRINS中没有低温机制,其高通量设计可最大程度地提高灵敏度。麦当劳天文台的2.7米哈兰史密斯望远镜上的IGRINS与8米超大型望远镜上的CRIRES几乎一样敏感。然而,R≈45,000的IGRINS在单次曝光中具有CRIRES光谱抓握的30倍以上。在这里,我们总结了IGRINS自2014年夏季投入运行以来的前300个科学夜晚的性能。IGRINS观测员的目标是太阳系天体,例如冥王星和谷神星,彗星,附近的年轻恒星,金牛座和蛇夫座等恒星形成区域,星际介质,光解离区,银河中心,行星状星云,星系核心和超新星。这些物体的丰富的近红外光谱激发了独特的科学案例,并提供了有关仪器性能的信息。提交了超过10份IGRINS论文,还有数十份正在准备中。在2.7m望远镜上使用IGRINS,我们在曝光时间一小时内实现了K = 10.3量级信号源的信噪比大于100。尽管IGRINS安装在卡塞格林(Cassegrain)上,但由于其紧凑的设计,仪器的弯曲度仅为亚像素。检测器的特性和稳定性已经过定期测试,这使我们能够调整仪器操作并提高科学质量。各种各样的科学程序催生了用于分析高分辨率光谱的新工具,包括多重光谱提取,大气模型拟合,旋转和径向速度,独特的线识别和星云盘建模。在这里,我们将讨论仪器性能的详细信息,总结早期的科学成果,并展示IGRINS作为通用近红外光谱仪的特征以及ISHELL和GMTNIRS等未来硅浸没光栅光谱仪的先驱。

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