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The DESY Digital Silicon Photomultiplier: Device Characteristics and First Test-Beam Results

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arxiv 2402.12305 v2 pith:KKY7YABG submitted 2024-02-19 physics.ins-det

classification physics.ins-det
keywords desyparticletimedigitallevelresolutionsignalcharacteristics
verification ladder T0 review T1 audit T2 compute T3 formal
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Silicon Photomultipliers (SiPMs) are state-of-the-art photon detectors used in particle physics, medical imaging, and beyond. They are sensitive to individual photons in the optical wavelength regime and achieve time resolutions of a few tens of picoseconds, which makes them interesting candidates for timing detectors in tracking systems for particle physics experiments. The Geiger discharges triggered in the sensitive elements of a SiPM, Single-Photon Avalanche Diodes (SPADs), yield signal amplitudes independent of the energy deposited by a photon or ionizing particle. This intrinsically digital nature of the signal motivates its digitization already on SPAD level. A digital SiPM (dSiPM) was designed at Deutsches Elektronen Synchrotron (DESY), combining a SPAD array with embedded CMOS circuitry for on-chip signal processing. A key feature of the DESY dSiPM is its capability to provide hit-position information on pixel level, and one hit time stamp per quadrant at a 3 MHz readout-frame rate. The pixels comprise four SPADs and have a pitch of about 70 um. The four time stamps are provided by 12 bit Time-to-Digital Converters (TDCs) with a resolution better than 100 ps. The chip was characterized in the laboratory to determine dark count rate, breakdown voltage, and TDC characteristics. Test-beam measurements are analyzed to assess the DESY dSiPMs performance in the context of a 4D-tracking applications. The results demonstrate a spatial hit resolution on a pixel level, a minimum-ionizing particle detection efficiency of about 30 % and a time resolution in the order of 50 ps.

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Reviewed papers in the Pith corpus that reference this work. Sorted by Pith novelty score. Full citation record

  1. Fiber-coupled Digital Photo Sensors for Large Time Projection Chambers

    physics.ins-det 2025-02 conditional novelty 6.0 of 10

    A design concept that places fiber-coupled digital silicon photomultipliers inside the bulk of large liquid argon TPCs to capture prompt scintillation light for fast timing and particle identification.

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