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Khayyam: a tunable spatial heterodyne spectrometer for observing diffuse emission line targets

机译:Khayyam:可调谐空间外差光谱仪,用于观察漫射排放线目标

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We describe first results from a new instrument-telescope configuration that combines all of the capabilities necessary to obtain high resolving power visible band spectra of diffuse targets from small aperture telescopes where significant observing time can be obtained. This instrument –Khayyam- is a tunable all-reflective spatial heterodyne spectrometer (SHS) that is mounted to a fixed focal plane shared by the 0.6m Coude auxiliary telescope and the 3m Shane telescope on Mt. Hamilton. Khayyam has an up to 78 arcmin input field of view, resolving power up to 176000, and a tunable bandpass from 350-700 nm. It is being field tested for initial use to study spatially extended solar system targets where high resolving power is necessary to separate multimodal signals, crowded molecular bands, and to sample low velocities (&10 km/s) and rapid temporal cadence is necessary to track physical evolution. Two of the best comet targets during next year is comet C/2011 L4 (PanSTARRS), and C/2011 F1 (LINEAR). Our goal is to sequentially measure isotopic ratios of sup14/supN:sup15/supN and sup12/supC:sup13/supC in CN, along with the production rate and the production rate ratios of varies daughter species, particularly Csub2/sub, Csub3/sub, NHsub2/sub, OI, and CN, as a function of heliocentric distance and time.© (2012) COPYRIGHT Society of Photo-Optical Instrumentation Engineers (SPIE). Downloading of the abstract is permitted for personal use only.
机译:我们描述了从一个新的仪器,望远镜配置,结合所有的功能,需要获得高从那里可以得到显著的观测时间小口径望远镜分辨漫目标的力量可见带谱第一的成绩。该仪器-Khayyam-是安装于由上山汉密尔顿0.6米折轴辅助望远镜和3米沙恩望远镜共享一个固定焦平面的可调谐的全反射型空间差光谱仪(SHS)。亚姆具有一个角度高达78弧分的输入字段,分辨能力可达176000,和从350-700纳米的可调谐带通。它被场测试初次使用来研究空间延伸的太阳能系统的主要目标,其中高的分辨能力是必要分离多峰信号,拥挤分子带,并以样品低速(小于10公里/秒)和快速时间节奏是必要跟踪物理进化。在明年最好的彗星目标二是彗星C / 2011 L4(泛星计画),以及C / 2011 F1(LINEAR)。我们的目标是顺序地测量的同位素比率 14 N: 15 N和 12 C: 13 下,在CN ,具有生产速度和生产速度比沿变化女儿物种,特别是C <子> 2 ,C <子> 3 ,NH <子> 2 ,OI,并CN,如照片,光学仪器工程师(2012)著作权协会(SPIE)日心距离和时间的函数。©。仅供个人使用的摘要下载。

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