To search for dark matter candidates with masses below O(MeV), the SPLENDOR (Search for Particles of Light dark mattEr with Narrow-gap semiconDuctORs) experiment is developing novel narrow-bandgap semiconductors with electronic bandgaps on the order of 1-100 meV. In order to detect the charge signal produced by scattering or absorption events, SPLENDOR has designed a two-stage cryogenic HEMT-based amplifier with an estimated charge resolution approaching the single-electron level. A low-capacitance (∼1.6 pF) HEMT is used as a buffer stage at T=10mK to mitigate effects of stray capacitance at the input. The buffered signal is then amplified by a higher-capacitance (∼200 pF) HEMT amplifier stage at T=4K. Importantly, the design of this amplifier makes it usable with any insulating material - allowing for rapid prototyping of a variety of novel detector materials. We present the two-stage cryogenic amplifier design, preliminary voltage noise performance, and estimated charge resolution of 7.2 electrons.
@article{arxiv.2311.02229,
title = {Two-Stage Cryogenic HEMT Based Amplifier For Low Temperature Detectors},
author = {J. Anczarski and M. Dubovskov and C. W. Fink and S. Kevane and N. A. Kurinsky and A. Mazumdar and S. J. Meijer and A. Phipps and F. Ronning and I. Rydstrom and A. Simchony and Z. Smith and S. M. Thomas and S. L. Watkins and B. A. Young},
journal= {arXiv preprint arXiv:2311.02229},
year = {2024}
}
Comments
4 pages, 3 figures, 1 table, conference proceedings for LTD20