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Background discrimination with a Micromegas detector prototype and veto system for BabyIAXO

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arxiv 2403.06316 v1 pith:FHZJP3CT submitted 2024-03-10 physics.ins-det

Background discrimination with a Micromegas detector prototype and veto system for BabyIAXO

classification physics.ins-det
keywords backgroundtextdetectorlevelbabyiaxocountsdiscriminationhelioscope
verification ladder T0 review T1 audit T2 compute T3 formal T4 reserved
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In this paper we present measurements performed with a Micromegas X-ray detector setup. The detector is a prototype in the context of the BabyIAXO helioscope, which is under construction to search for an emission of the hypothetical axion particle from the sun. An important component of such a helioscope is a low background X-ray detector with a high efficiency in the 1-10 keV energy range. The goal of the measurement was to study techniques for background discrimination. In addition to common techniques we used a multi-layer veto system designed to tag cosmogenic neutron background. Over an effective time of 52 days, a background level of $8.6 \times 10^{-7}\,\text{counts keV}^{-1}\,\text{cm}^{-2} \, \text{s}^{-1}$ was reached in a laboratory at above ground level. This is the lowest background level achieved at surface level. In this paper we present the experimental setup, show simulations of the neutron-induced background, and demonstrate the process to identify background signals in the data. Finally, prospects to reach lower background levels down to $10^{-7} \, \text{counts keV}^{-1} \, \text{cm}^{-2} \, \text{s}^{-1}$ will be discussed.

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  1. Spatial resolution studies with the BabyIAXO Micromegas prototype

    physics.ins-det 2025-09 conditional novelty 5.0

    The IAXO-D1 Micromegas prototype achieves 100 to 300 micrometer spatial resolution at 5 to 10 keV, below the 1 mm BabyIAXO requirement, with simulations matching the measurements.