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Chung, Moses
Intense Beam and Accelerator Lab.
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High-Precision Determination of Oxygen KαTransition Energy Excludes Incongruent Motion of Interstellar Oxygen

Author(s)
Leutenegger, M. A.Kühn, S.Micke, P.Steinbrügge, R.Stierhof, J.Shah, C.Hell, N.Bissinger, M.Hirsch, M.Ballhausen, R.Lang, M.Gräfe, C.Wipf, S.Cumbee, R.Betancourt-Martinez, G. L.Park, S.Yerokhin, V. A.Surzhykov, A.Stolte, W. C.Niskanen, J.Chung, MosesPorter, F. S.Stöhlker, T.Pfeifer, T.Wilms, J.Brown, G. V.Crespo López-Urrutia, J. R.Bernitt, S.
Issued Date
2020-12
DOI
10.1103/physrevlett.125.243001
URI
https://scholarworks.unist.ac.kr/handle/201301/49482
Fulltext
https://journals.aps.org/prl/abstract/10.1103/PhysRevLett.125.243001
Citation
PHYSICAL REVIEW LETTERS, v.125, no.24, pp.243001
Abstract
We demonstrate a widely applicable technique to absolutely calibrate the energy scale of x-ray spectra with experimentally well-known and accurately calculable transitions of highly charged ions, allowing us to measure the K-shell Rydberg spectrum of molecular O-2 with 8 meV uncertainty. We reveal a systematic similar to 450 meV shift from previous literature values, and settle an extraordinary discrepancy between astrophysical and laboratory measurements of neutral atomic oxygen, the latter being calibrated against the aforementioned O-2 literature values. Because of the widespread use of such, now deprecated, references, our method impacts on many branches of x-ray absorption spectroscopy. Moreover, it potentially reduces absolute uncertainties there to below the meV level.
Publisher
AMER PHYSICAL SOC
ISSN
0031-9007
Keyword
HIGH-RESOLUTIONLATTICE-PARAMETERSHELL EXCITATIONABSORPTION-EDGEXMM-NEWTONRAYSPECTRACAPELLACALIBRATIONGENERATION

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