A Comparison of Micromegas with x/y Strip Charge Readouts for Directional Recoil Detection
Majd Ghrear, Alasdair G. McLean, Hima B. Korandla, Ferdos Dastgiri,, Neil J. C. Spooner, Sven E. Vahsen

TL;DR
This study compares various Micromegas-based x/y strip readout configurations for gaseous TPCs, evaluating their gain, resolution, and charge sharing to optimize low-energy recoil detection for particle physics applications.
Contribution
It provides a comprehensive comparison of 9 x/y strip configurations with Micromegas, guiding the design of scalable, cost-effective readouts for future large-volume detectors.
Findings
DLC layers improve spark resistance and gain resolution.
Strip configuration adjustments mitigate signal loss due to DLC.
Micromegas with x/y strips effectively detect 3D alpha tracks.
Abstract
Detecting the topology and direction of low-energy nuclear and electronic recoils is broadly desirable in nuclear and particle physics, with applications in coherent elastic neutrino-nucleus scattering, astrophysical neutrino measurements, probing dark matter (DM) within the neutrino fog, and confirming the galactic origin of DM. Gaseous Time Projection Chambers (TPCs) offer the required gain and readout granularity, but must be large to achieve the required volume. Therefore, scalable, cost-effective readout technologies are essential. High-resolution x/y strip readouts, previously identified as the optimal balance between cost-efficiency and performance, are examined here. To guide the readout design of a 40-L detector under construction, we present a comparative analysis of 9 x/y strip configurations with Micromegas amplification. Each setup employs VMM3a front-end ASICs within the…
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Taxonomy
TopicsPlasma Diagnostics and Applications · Spectroscopy and Laser Applications · Gas Sensing Nanomaterials and Sensors
