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The spectrum of Th-Ar hollow-cathode lamps in the 900-4500 nm region: establishing wavelength standards for the calibration of VLT spectrographs

机译:在900-4500nm区域中的Th-Ar中空阴极灯的光谱:建立VLT光谱仪校准的波长标准

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The European Southern Observatory (ESO), the Space Telescope European Co-ordinating Facility (ST-ECF), and the US National Institute of Standards and Technology (NIST) are collaborating to study Th-Ar hollow cathode lamps as used for the calibration of VLT (Very Large Telescope) spectrographs. In the near IR only a limited number of wavelength standards are available. The density and distribution of lines in Ne or Kr lamps, for example, are inadequate for high-resolution spectroscopy. Th-Ar hollow cathode lamps provide a rich spectrum in the UV-visible region and have been used in astronomy for a long time; current examples at ESO include the spectrographs UVES and FLAMES. The Th spectrum from 278 nm to about 1000 nm was studied at high resolution about 20 years ago (Palmer and Engleman, 1983). Two studies of the Th-Ar spectrum in the near IR have recently been published, but neither work is directly applicable to the calibration of IR astronomical spectrographs at ESO. We report new measurements using the 2-m UV/visible/IR Fourier transform spectrometer (FTS) at NIST that establish more than 2000 lines as wavelength standards in the range 900 nm to 4500 nm. This line list is used as input for a physical model that provides the wavelength calibration for the Cryogenic High-Resolution IR Echelle Spectrometer (CRIRES), ESO's new high resolution (R~100,000) IR spectrograph at the VLT. We also present first calibration results from laboratory testing of CRIRES. The newly established wavelength standards will also be available for use by X-shooter and other spectrographs in the future. Measurements of the variation of the spectrum of Th-Ar lamps as a function of operating current allow us to optimise the spectral output in terms of relative intensity and line density for operation on the telescope. Since Th and Ar line intensities show a different response with respect to operating current, such measurements can be used as a diagnostic tool for distinguishing the gas and metal lines. Our findings show that Th-Ar lamps hold the promise of becoming a standard source for wavelength calibration in near IR astronomy.
机译:欧洲南部天文台(ESO),太空望远镜欧洲协调设施(ST-ECF)以及美国国家标准和技术研究所(NIST)正在合作,研究用于校准的TH-AR空心阴极灯VLT(非常大的望远镜)光谱仪。在接近IR中,只有有限数量的波长标准。例如,NE或KR灯中线的密度和分布对于高分辨率光谱不足。 Th-Ar中空阴极灯在UV可见区域中提供丰富的光谱,并且已经在天文中使用了很长时间; ESO的当前示例包括光谱仪UVES和火焰。在大约20年前在高分辨率(Palmer和Engleman,1983)中,在高分辨率中研究了278nm至约1000nm的Th谱。最近发布了附近IR的TH-AR光谱的两项研究,但两种工作都没有直接适用于ESO的IR天文谱仪的校准。我们通过在NIST上使用2-M紫外/可见/ IR傅里叶变换光谱仪(FTS)在NIST中报告了新的测量,该测量值在2000多条线程为900nm至4500nm的波长标准中。该线列表用作物理模型的输入,该物理模型提供了低温高分辨率IR梯度光谱仪(CRIRES)的波长校准,ESO在VLT的新型高分辨率(R〜100,000)红外光谱仪。我们还提出了第一次校准导致船舶的实验室测试。新建立的波长标准也可供X射击者和其他光谱仪在未来使用。作为操作电流的函数的Th-AR灯频谱变化的测量允许我们在望远镜上的相对强度和线密度方面优化光谱输出。由于TH和AR线强度示出了相对于工作电流的不同响应,因此这种测量可以用作区分气体和金属线的诊断工具。我们的研究结果表明,Th-AR灯具能够成为在IR天文附近波长校准的标准来源的承诺。

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