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Home
Research
Research Topics
Astrophotonics
Multimodal Spectroscopy and Imaging
Innovative Materials and Sensing
Research Groups
Applied Analytical Photonics
Astrophotonics
Multi-Channel Spectroscopy
Hybrid Nanostructures
Transfer Lab
innoFSPEC Team
Contact
Publications
Publications
ID
Datum
2019-09-24 13:42:14
Research Group
Astrophotonics (AP)
Title (short)
Wavelength calibration with PMAS at 3.5 m
Title
Wavelength calibration with PMAS at 3.5 m Calar Alto Telescope using a tunable astro-comb
Year
2018
Authors
J. Chavez Boggio, T. Fremberg, D. Bodenmüller, C. Sandin, M. Zajnulina, A. Kelz, D. Giannone, M. Rutowska, B. Moralejo, M. Roth, M. Wysmolek, H. Sayinc
Abstract
On-sky tests conducted with an astro-comb using the Potsdam Multi-Aperture Spectrograph (PMAS) at the 3.5 m Calar Alto Telescope are reported. The proposed astro-comb approach is based on cascaded four-wave mixing between two lasers propagating through dispersion optimized nonlinear fibers. This approach allows for a line spacing that can be continuously tuned over a broad range (from tens of GHz to beyond 1 THz) making it suitable for calibration of low- medium- and high-resolution spectrographs. The astro-comb provides 300 calibration lines and his line-spacing is tracked with a wavemeter having 0.3 pm absolute accuracy. First, we assess the accuracy of Neon calibration by measuring the astro-comb lines with (Neon calibrated) PMAS. The results are compared with expected line positions from wavemeter measurement showing an offset of 5–20 pm (4%–16% of one resolution element). This might be the footprint of the accuracy limits from actual Neon calibration. Then, the astro-comb performance as a calibrator is assessed through measurements of the Ca triplet from stellar objects HD3765 and HD219538 as well as with the sky line spectrum, showing the advantage of the proposed astro-comb for wavelength calibration at any resolution.
Type of Publication
Journal Article
Details
Journal
Optics Communications
Volume
415
Number
Pages
186-193
ISSN
Citekey
DOI
10.1016/j.optcom.2018.01.007
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2019-09-24
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Josephine Henkel
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