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X-ray Spectroscopy Based on Micro-Calorimeters at Internal Targets of Storage Rings
With metallic-magnetic calorimeters (MMCs), promising detectors for high-precision X-ray spectrometry in atomic and fundamental physics experiments are available. In this work, we present a pilot experiment based on a maXs-30 type MMC-spectrometer for recording X-rays emitted in collisions of lithiu...
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Published in: | Atoms 2023-01, Vol.11 (1), p.13 |
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creator | Herdrich, Marc Oliver Hengstler, Daniel Fleischmann, Andreas Enss, Christian Gumberidze, Alexandre Hillenbrand, Pierre-Michel Indelicato, Paul Fritzsche, Stephan Stöhlker, Thomas |
description | With metallic-magnetic calorimeters (MMCs), promising detectors for high-precision X-ray spectrometry in atomic and fundamental physics experiments are available. In this work, we present a pilot experiment based on a maXs-30 type MMC-spectrometer for recording X-rays emitted in collisions of lithium-like uranium ions with a molecular nitrogen gas jet in the internal target of the ESR storage ring of the GSI. Sample spectra have been measured, and a multitude of X-ray transitions have been unambiguously identified. As a first test and for comparison with data recorded at an EBIT, the 2s Lamb shift in lithium-like uranium was estimated. |
doi_str_mv | 10.3390/atoms11010013 |
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subjects | 2s Lamb shift atomic physics Beryllium Calibration Energy Experiments Gas jets high-precision X-ray spectroscopy Lithium metallic-magnetic calorimeters Sensors Spectrum analysis Uranium X-rays |
title | X-ray Spectroscopy Based on Micro-Calorimeters at Internal Targets of Storage Rings |
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