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The micro-RWELL layouts for high particle rate

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arxiv 1903.11017 v2 pith:GHRAV6HW submitted 2019-03-26 physics.ins-det

classification physics.ins-det
keywords resistivehighlayoutsparticleamplificationdesigneddetectorfluxes
verification ladder T0 review T1 audit T2 compute T3 formal
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abstract

The $\mu$-RWELL is a single-amplification stage resistive Micro-Pattern Gaseous Detector (MPGD). The detector amplification element is realized with a single copper-clad polyimide foil micro-patterned with a blind hole (well) matrix and embedded in the readout PCB through a thin Diamond-Like-Carbon (DLC) sputtered resistive film. The introduction of the resistive layer, suppressing the transition from streamer to spark, allows to achieve large gains ($\geq$10$^4$) with a single amplification stage, while partially reducing the capability to stand high particle fluxes. The simplest resistive layout, designed for low-rate applications, is based on a single-resistive layer with edge grounding. At high particle fluxes this layout suffers of a non-uniform response. In order to get rid of such a limitation different current evacuation geometries have been designed. In this work we report the study of the performance of several high rate resistive layouts tested at the CERN H8-SpS and PSI $\pi$M1 beam test facilities. These layouts fulfill the requirements for the detectors at the HL-LHC and for the experiments at the next generation colliders FCC-ee/hh and CepC.

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  1. uRWELL detector developments at Jefferson Lab for high luminosity experiments

    physics.ins-det 2024-11 conditional novelty 5.0 of 10

    A proceedings report on μRWELL prototypes for CLAS12 upgrades: cosmic tests show >90% efficiency on a large detector, with high-rate operation still to be tested.

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