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Near-infrared wavelength calibration of astrophysical spectrographs with the emission spectrum of the CN molecule

机译:CN分子发射光谱的天体物理谱仪的近红外波长校准

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Many astrophysical applications require precise wavelength calibration of high resolution spectra. Calibration sources for this purpose at near-infrared wavelengths are sparse. We present an experimental setup for an elec-trodeless microwave discharge lamp that produces molecular band emission spectra. The discharge is sustained inside a glass cell filled with a combination of different gases producing CN molecules with many spectral lines in the wavelength range between 1 μm and 2.5 μm. We investigate this lamp in terms of its usability for wavelength calibration in high resolution spectroscopy. In this conference contribution, we present the experimental setup and the characterization of the calibration source in terms of line identification, line intensities, and line density. We find approximately 20,000 lines in the spectral region of 1 - 2 μm with relative peak intensities in a range of two orders of magnitude. The results from a first endurance test show that the durability of the spectrum requires careful attention in the course of further development.
机译:许多天体物理应用需要高分辨率光谱的精确波长校准。在近红外波长下为此目的校准源是稀疏的。我们为生产分子带发射光谱产生的电子软管微波放电灯的实验设置。放电在填充有不同气体的组合的玻璃单元内持续,在1μm和2.5μm之间的波长范围内产生CN分子的不同气体。我们在高分辨率光谱中的波长校准的可用性方面调查该灯。在本次会议中,我们在线识别,线强度和线密度提出了实验设置和校准源的表征。我们在1-2μm的光谱区域中发现大约20,000条线,其幅度的范围内具有相对峰值强度。第一耐久性测试的结果表明,在进一步发展的过程中,频谱的耐用性需要仔细关注。

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