Impact of embedded \(^{163}\)Ho on the performance of the transition-edge sensor microcalorimeters of the HOLMES experiment

IF 4.8 2区 物理与天体物理 Q2 PHYSICS, PARTICLES & FIELDS
Douglas Bennett, Matteo Borghesi, Pietro Campana, Rodolfo Carobene, Giancarlo Ceruti, Matteo De Gerone, Marco Faverzani, Lorenzo Ferrari Barusso, Elena Ferri, Joseph Fowler, Sara Gamba, Flavio Gatti, Andrea Giachero, Marco Gobbo, Danilo Labranca, Roberto Moretti, Angelo Nucciotti, Luca Origo, Stefano Ragazzi, Dan Schmidt, Daniel Swetz, Joel Ullom
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Abstract

We present a detailed investigation of the performance of transition-edge sensor (TES) microcalorimeters with \(^{163}\)Ho atoms embedded by ion implantation, as part of the HOLMES experiment aimed at neutrino mass determination. The inclusion of \(^{163}\)Ho atoms introduces an excess heat capacity due to a pronounced Schottky anomaly, which can affect the detector’s energy resolution, signal height, and response time. We fabricated TES arrays with varying levels of \(^{163}\)Ho activity and characterized their performance in terms of energy resolution, decay time constants, and heat capacity. The intrinsic energy resolution was found to degrade with increasing \(^{163}\)Ho activity, consistent with the expected scaling of heat capacity. From the analysis, we determined the specific heat capacity of \(^{163}\)Ho to be \((2.9 \pm 0.4 \mathrm {(stat)} \pm 0.7 \mathrm {(sys)})\) J/K/mol at \((94 \pm 1)\) mK, close to the literature values for metallic holmium. No additional long decay time constants correlated with \(^{163}\)Ho activity were observed, indicating that the excess heat capacity does not introduce weakly coupled thermodynamic systems. These results suggest that our present TES microcalorimeters can tolerate \(^{163}\)Ho activities up to approximately 5 Bq, with only about a factor of three degradation in performance compared to detectors without \(^{163}\)Ho. For higher activities, reducing the TES transition temperature is necessary to maintain or improve the energy resolution. These findings provide critical insights for optimizing TES microcalorimeters for future neutrino mass experiments and other applications requiring embedded radioactive sources. The study also highlights the robustness of TES technology in handling limited amounts of implanted radionuclides while maintaining high-resolution performance.

嵌入\(^{163}\) Ho对HOLMES实验过渡边缘传感器微热量计性能的影响
我们对离子注入嵌入\(^{163}\) Ho原子的过渡边缘传感器(TES)微热量计的性能进行了详细的研究,作为旨在测定中微子质量的HOLMES实验的一部分。由于明显的肖特基异常,\(^{163}\) Ho原子的包含引入了多余的热容量,这可能影响探测器的能量分辨率,信号高度和响应时间。我们制作了具有不同水平\(^{163}\) Ho活性的TES阵列,并从能量分辨率、衰变时间常数和热容方面表征了它们的性能。发现本征能量分辨率随着\(^{163}\) Ho活度的增加而降低,与预期的热容缩放一致。通过分析,我们确定\(^{163}\) Ho在\((94 \pm 1)\) mK时的比热容为\((2.9 \pm 0.4 \mathrm {(stat)} \pm 0.7 \mathrm {(sys)})\) J/K/mol,接近文献中金属钬的值。没有观察到与\(^{163}\) Ho活度相关的额外长衰变时间常数,表明过剩热容不会引入弱耦合热力学系统。这些结果表明,我们目前的TES微热量计可以承受高达约5 Bq的\(^{163}\) Ho活动,与没有\(^{163}\) Ho的探测器相比,性能下降仅约为三倍。对于较高的活度,降低TES转变温度对于维持或提高能量分辨率是必要的。这些发现为优化TES微热量计提供了重要的见解,用于未来的中微子质量实验和其他需要嵌入放射源的应用。该研究还强调了TES技术在处理少量植入放射性核素的同时保持高分辨率性能的稳健性。
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来源期刊
The European Physical Journal C
The European Physical Journal C 物理-物理:粒子与场物理
CiteScore
8.10
自引率
15.90%
发文量
1008
审稿时长
2-4 weeks
期刊介绍: Experimental Physics I: Accelerator Based High-Energy Physics Hadron and lepton collider physics Lepton-nucleon scattering High-energy nuclear reactions Standard model precision tests Search for new physics beyond the standard model Heavy flavour physics Neutrino properties Particle detector developments Computational methods and analysis tools Experimental Physics II: Astroparticle Physics Dark matter searches High-energy cosmic rays Double beta decay Long baseline neutrino experiments Neutrino astronomy Axions and other weakly interacting light particles Gravitational waves and observational cosmology Particle detector developments Computational methods and analysis tools Theoretical Physics I: Phenomenology of the Standard Model and Beyond Electroweak interactions Quantum chromo dynamics Heavy quark physics and quark flavour mixing Neutrino physics Phenomenology of astro- and cosmoparticle physics Meson spectroscopy and non-perturbative QCD Low-energy effective field theories Lattice field theory High temperature QCD and heavy ion physics Phenomenology of supersymmetric extensions of the SM Phenomenology of non-supersymmetric extensions of the SM Model building and alternative models of electroweak symmetry breaking Flavour physics beyond the SM Computational algorithms and tools...etc.
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