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SPLENDOR: a novel detector platform to search for light dark matter with narrow-gap semiconductors

SPLENDOR: a novel detector platform to search for light dark matter with narrow-gap semiconductors

来源:Arxiv_logoArxiv
英文摘要

We present the design and current status of SPLENDOR, a novel detector platform that combines narrow-gap semiconductor targets with low-noise charge readout to achieve sensitivity to dark matter energy deposits well below the eV scale. SPLENDOR is designed to be a modular and scalable system able to accommodate different target materials and signal readout technologies. SPLENDOR's present strategy entails: (i) the use of strongly correlated f-electron semiconductors with anisotropic electronic structures to enable not only sub-eV energy thresholds, but also directional sensitivity to the incoming dark matter flux, allowing for signal-background discrimination via daily modulation, and (ii) custom charge readout based on cryogenic high-electron-mobility transistor (cryoHEMT) amplifiers approaching single-electron resolution. We report on the selection and characterization of Eu$_5$In$_2$Sb$_6$ as the target material for SPLENDOR's first prototype detector, as well as the development and calibration of the prototype amplifier chain, achieving a measured charge resolution of 20$\pm$7 electrons in silicon test samples, consistent with predicted performance. This provides a demonstration of the detector architecture, which is now ready for deployment in a dark matter search campaign to deliver SPLENDOR's first science results. Finally, we present estimates of sensitivity reach in the parameter space of athermally produced relic dark matter under high- and low-background environments, and for various amplifier technology upgrades with increasing performance, including planned quantum sensing upgrades in order to achieve our ultimate goal of sub-electron resolution in optimized systems. SPLENDOR provides a novel approach to dark matter detection, combining quantum sensing with material's design to open new avenues of exploration in the sub-MeV mass range of dark matter parameter space.

N. S. Sirica、Z. J. Smith、K. Stifter、S. M. Thomas、S. L. Watkins、B. A. Young、J. -X. Zhu、P. Abbamonte、A. Albert、D. S. M. Alves、J. Anczarski、T. Aralis、T. U. Böhm、C. Boyd、J. Chen、P. -H. Chu、M. S. Cook、C. W. Fink、M. L. Graesser、Y. Kahn、C. S. Kengle、T. Kucinski、N. A. Kurinsky、C. Lane、A. Leder、R. Massarczyk、A. Mazumdar、S. J. Meijer、W. Nie、E. A. Peterson、A. Phipps、F. Ronning、P. F. S. Rosa、I. Rydstrom

物理学

N. S. Sirica,Z. J. Smith,K. Stifter,S. M. Thomas,S. L. Watkins,B. A. Young,J. -X. Zhu,P. Abbamonte,A. Albert,D. S. M. Alves,J. Anczarski,T. Aralis,T. U. Böhm,C. Boyd,J. Chen,P. -H. Chu,M. S. Cook,C. W. Fink,M. L. Graesser,Y. Kahn,C. S. Kengle,T. Kucinski,N. A. Kurinsky,C. Lane,A. Leder,R. Massarczyk,A. Mazumdar,S. J. Meijer,W. Nie,E. A. Peterson,A. Phipps,F. Ronning,P. F. S. Rosa,I. Rydstrom.SPLENDOR: a novel detector platform to search for light dark matter with narrow-gap semiconductors[EB/OL].(2025-07-23)[2025-08-10].https://arxiv.org/abs/2507.17782.点此复制

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