6533b822fe1ef96bd127d9a6

RESEARCH PRODUCT

Beam test results of IHEP-NDL Low Gain Avalanche Detectors(LGAD)

S. XiaoS. AlderweireldtS. AliC. AllaireC. AgapopoulouN. AtanovM.k. AyoubG. BaroneD. BenchekrounA. BuzatuD. CaforioL. Castillo GarcíaY. ChanH. ChenV. CindroL. CiucuJ. Barreiro Guimarães Da CostaH. CuiF. Davó MirallesY. DavydovG. D’amenC. De La TailleR. KiuchiY. FanA. FalouA.s.c. FerreiraM. GarauJ. GeA. GhoshG. GiacominiE.l. GkougkousisC. GriecoS. GuindonD. HanS. HanM. HolmbergA. HowardY. HuangY. HuangM. JingY. KhoulakiG. KrambergerE. KuwertzH. LefebvreM. LeiteA. LeopoldC. LiQ. LiH. LiangZ. LiangB. LiuJ. LiuA. LuthfiF. LyuS. MalyukovI. MandićL. MasettiM. MikužI. NikolicL. PolidoriR. PolifkaO. PosopkinaB. QiK. RanB.j.g. ReynoldsC. RizziM. Robles ManzanoE. RossiA. RummlerS. SacerdotiG.t. SaitoN. Seguin-moreauL. SerinL. ShanL. ShiX. ShiN.f. SjostromA. Soares Canas FerreiraJ. SoengenH. StenzelA.j. SzadajY. TanS. TerzoJ.o. ThomasE. TolleyA. TricoliS. Trincaz-duvoidR. WangS.m. WangW. WangW. WangK. WuT. YangY. YangC. YuX. ZhangL. ZhaoM. ZhaoZ. ZhaoX. ZhengX. Zhuang

subject

Electron beamNuclear and High Energy PhysicsPhysics - Instrumentation and DetectorsFÍSICA DE ALTA ENERGIAPhysics::Instrumentation and DetectorsFOS: Physical sciences01 natural sciences010305 fluids & plasmassymbols.namesakeSilicon photomultiplierOpticsLGAD0103 physical sciencesGaussian functionelectron: irradiationphotomultiplier: silicon[PHYS.PHYS.PHYS-INS-DET]Physics [physics]/Physics [physics]/Instrumentation and Detectors [physics.ins-det]Detectors and Experimental Techniques010306 general physicsInstrumentationphysics.ins-detPhysicsLarge Hadron ColliderLuminosity (scattering theory)business.industryfluctuationDetectorATLAS experimentTime resolutionDESYInstrumentation and Detectors (physics.ins-det)ATLASsymbolsHigh Energy Physics::ExperimentbusinessCFDBeam (structure)performancesemiconductor detector: design

description

A High-Granularity Timing Detector (HGTD) is proposed based on the Low-Gain Avalanche Detector (LGAD) for the ATLAS experiment to satisfy the time resolution requirement for the up-coming High Luminosity at LHC (HL-LHC). We report on beam test results for two proto-types LGADs (BV60 and BV170) developed for the HGTD. Such modules were manufactured by the Institute of High Energy Physics (IHEP) of Chinese Academy of Sciences (CAS) collaborated with Novel Device Laboratory (NDL) of the Beijing Normal University. The beam tests were performed with 5 GeV electron beam at DESY. The timing performance of the LGADs was compared to a trigger counter consisting of a quartz bar coupled to a SiPM readout while extracting reference SiPM by fitting with a Gaussian function. The time resolution was obtained as 41 ps and 63 ps for the BV60 and the BV170, respectively. To meet the timing resolution requirement of up-coming High Luminosity LHC (HL-LHC), a new detector based on the Low-Gain Avalanche Detector(LGAD), High-Granularity Timing Detector (HGTD), is under intensive research in ATLAS. Two types of IHEP-NDL LGADs(BV60 and BV170) for this update is being developed by Institute of High Energy Physics (IHEP) of Chinese Academic of Sciences (CAS) cooperated with Novel Device Laboratory (NDL) of Beijing Normal University and they are now under detailed study. These detectors are tested with $5GeV$ electron beam at DESY. A SiPM detector is chosen as a reference detector to get the timing resolution of LGADs. The fluctuation of time difference between LGAD and SiPM is extracted by fitting with a Gaussian function. Constant fraction discriminator (CFD) method is used to mitigate the effect of time walk. The timing resolution of $41 \pm 1 ps$ and $63 \pm 1 ps$ are obtained for BV60 and BV170 respectively.

10.1016/j.nima.2020.164956http://arxiv.org/abs/2005.07323