4.6 Article

Integration of maXs-type microcalorimeter detectors for high-resolution x-ray spectroscopy into the experimental environment at the CRYRING@ESR electron cooler

期刊

PHYSICA SCRIPTA
卷 97, 期 11, 页码 -

出版社

IOP Publishing Ltd
DOI: 10.1088/1402-4896/ac93be

关键词

microcalorimeter; precision x-ray spectroscopy; heavy highly charged ions; ion storage ring; metallic magnetic calorimeter; coincidence measurement

资金

  1. GSI
  2. European Research Council (ERC) under the European Union [824 109]
  3. CSC [2018.9-2022.2, 201 806 180 051]
  4. ErUM FSP T05-Aufbau von APPA bei FAIR (BMBF) [05P19SJFAA, 05P19VHFA1]

向作者/读者索取更多资源

This study reports the integration of novel magnetic microcalorimeter detectors developed within SPARC into the experimental environment of storage rings at GSI, Darmstadt. The modifications made to the detector allow for precision x-ray spectroscopy of stored heavy ions.
We report on the first integration of novel magnetic microcalorimeter detectors (MMCs), developed within SPARC (Stored Particles Atomic Physics Research Collaboration), into the experimental environment of storage rings at GSI(6), Darmstadt, namely at the electron cooler of CRYRING@ESR. Two of these detector systems were positioned at the 0 degrees and 180 degrees view ports of the cooler section to obtain high-resolution x-ray spectra originating from a stored beam of hydrogen-like uranium interacting with the cooler electrons. While previous test measurements with microcalorimeters at the accelerator facility of GSI were conducted in the mode of well-established stand-alone operation, for the present experiment we implemented several notable modifications to exploit the full potential of this type of detector for precision x-ray spectroscopy of stored heavy ions. Among these are a new readout system compatible with the multi branch system data acquisition platform of GSI, the synchronization of a quasi-continuous energy calibration with the operation cycle of the accelerator facility, as well as the first exploitation of the maXs detectors' time resolution to apply coincidence conditions for the detection of photons and charge-changed ions.

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