Two-Stage Cryogenic HEMT Based Amplifier For Low Temperature Detectors
arXiv:2311.02229 · doi:10.1007/s10909-023-03046-1
Abstract
To search for dark matter candidates with masses below (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 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 . 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.
4 pages, 3 figures, 1 table, conference proceedings for LTD20