1 SiPM Gain Test SiPM Multiple APD pixels operating at Geiger mode. Output is the sum of the outputs from all APD pixels. Advantages Compact size High.

Slides:



Advertisements
Similar presentations
P.P. & APD gain ratio report— 4 month testing Ken Chiang, J.Y. Lin, Jeri Chang 2009/3/19.
Advertisements

2 Introduction   MiniCal test-beam studies started at the beginning of March (till March 6 we only had 17 APD’s, then 33 APD’s)   A few days were.
1 Construction of the hadronic calorimeter prototype for ILC (CALICE collaboration) or experience with Geiger mode operating multipixel photodiodes (SiPM)
Multi Pixel Photon Counters (MPPC) and Scintillating Fibers (Sci-Fi)
1 A Design of PET detector using Microchannel Plate PMT with Transmission Line Readout Heejong Kim 1, Chien-Min Kao 1, Chin-Tu Chen 1, Jean-Francois Genat.
Performance Evaluation of SiPM Arrays under Strong Magnetic Fields
Scintillator based muon upgrade / BELLE Super B Factory Workshop In Hawaii Jan 2004, Honolulu, Hawaii 1.Scintillator strip option 2.Geiger photodiodes.
Photon detection Visible or near-visible wavelengths
Report on SiPM Tests SiPM as a alternative photo detector to replace PMT. Qauntify basic characteristics Measure Energy, Timing resolution Develop simulation.
Evaluation of Silicon Photomultiplier Arrays for the GlueX Barrel Calorimeter Carl Zorn Radiation Detector & Medical Imaging Group Jefferson Laboratory,
Uni Bergen:G. Eigen, J. Zalieckas, E. van der Kraaij FZU Prague: J. Cvach, J. Kvasnicka, I. Polák CALICE meeting, Argonne, 19/03/2014.
MPPC Radiation Hardness (gamma-ray & neutron) Satoru Uozumi, Kobe University for Toshinori Ikuno, Hideki Yamazaki, and all the ScECAL group Knowing radiation.
Update on Silicon Photomultipliers Yi Qiang (Hall-D) Jefferson Lab S&T Review May 10, 2011.
1 Development of Multi-pixel Geiger mode APD (SiPM) for a variety of new applications. Multi-pixel Geiger mode APD (so called SiPM) A possible new photo-sensor.
Detector development and physics studies in high energy physics experiments Shashikant Dugad Department of High Energy Physics Review, 3-9 Jan 2008.
Development of Multi-pixel photon counters(2) M.Taguchi, T.Nakaya, M.Yokoyama, S.Gomi(kyoto) T.Nakadaira, K.Yoshimura(KEK) for KEKDTP photon sensor group.
SiPM: Development and Applications
Characterization of the static and dynamic
SPARRO Group, University of Regina 1 Barrel Calorimeter Status Quo Zisis Papandreou University of Regina GlueX Collaboration Meeting JLab, December 11-13,
Upgrade of the CMS hadron outer calorimeter with SiPM’s
R&D of MPPC for T2K experiment PD07 : Photosensor Workshop /6/28 (Thu) S.Gomi T.Nakaya M.Yokoyama H.Kawamuko ( Kyoto University ) T.Nakadaira.
Development of a gamma-ray imager using a large area monolithic 4x4 MPPC array for a future PET scanner Takeshi Nakamori T. Kato, J. Kataoka, T. Miura,
Study of the Multi-Pixel Photon Counter for ILC calorimeter Satoru Uozumi (Kobe University) Atami Introduction of ILC and MPPC The MPPC performance.
Development of Multi-pixel photon counters(2) M.Taguchi, T.Nakaya, M.Yokoyama, S.Gomi(kyoto) T.Nakadaira, K.Yoshimura(KEK)
PANDA Anton A. Izotov, Gatchina A.A.Izotov, Gatchina, PANDA Forward TOF Walls. Side TOF walls in dipole Magnet SiPM/PMT187.
1 Development of Multi-Pixel Photon Counters (1) S.Gomi, T.Nakaya, M.Yokoyama, M.Taguchi, (Kyoto University) T.Nakadaira, K.Yoshimura, (KEK) Oct
Proposal to Test Improved Radiation Tolerant Silicon Photomultipliers F. Barbosa, J. McKisson, J. McKisson, Y. Qiang, E. Smith, D. Weisenberger, C. Zorn.
MPPC status M.Taguchi(kyoto) T2K ND /7/7.
Development of Multi-Pixel Photon Counters(MPPC) Makoto Taguchi Kyoto University.
KEN, JERI FU JEN CATHOLIC UNIVERSITY 2008/DEC./11 1 Testing Status of P.P. & APD.
Development of Multi-Pixel Photon Counters and readout electronics Makoto Taguchi High Energy Group.
Timing Studies of Hamamatsu MPPCs and MEPhI SiPM Samples Bob Wagner, Gary Drake, Patrick DeLurgio Argonne National Laboratory Qingguo Xie Department of.
Gain stability and the LYSO beam radiation monitor measurements
Multipixel Geiger mode photo-sensors (MRS APD’s) Yury Kudenko ISS meeting, KEK, 25 January 2006 INR, Moscow.
December Status of MRS photodiodes ND280 Convener’s Meeting, 9 June 2006 Yury Kudenko INR, Moscow.
A.Olchevski, JINR (Dubna) Test Beam studiesof COMPASS ECAL0 Test Beam studies of COMPASS ECAL0 module prototype with MAPD readout ECAL0 Team, JINR, DUBNA.
A Silicon Photomultiplier (SiPM) Based Readout for the sPHENIX Upgrade S. Boose, J. Haggerty, E. Mannel, A. Sukhanov For the PHENIX Collaboration Introduction:
Test and status of Silicon Photo Multipliers Kyungpook National University Youngdo Oh 2004/12/28.
R&D of Calorimeter using Strip/Block Scintillator with SiPM E.P. Jacosalem, S. Iba, N. Nakajima, H. Ono, A.L. Sanchez & H. Miyata Niigata University ILC.
A Multi-Threshold Method for TOF-PET Signal Processing Heejong Kim 1, Chien-Min Kao 1, Qingguo Xie 1, Chin-Tu Chen 1, Octavia Biris 2, Jialin Lin 2, Fukun.
Update on works with SiPMs at Pisa Matteo Morrocchi.
Upgrade of the MEG liquid xenon calorimeter with VUV-light sensitive large area SiPMs Kei Ieki for the MEG-II collaboration 1 II.
Development of characterization facilities and front-end electronics for SiPM R. A. Shukla, For SiPM Development Group.
Silicon Photomultiplier Development at GRAPES-3 K.C.Ravindran T.I.F.R, OOTY WAPP 2010 Worshop On behalf of GRAPES-3 Collaboration.
SiPM Workshop EU-FP7(HP3), Vienna, 16 Feb F.G. H.O. Study of scintillator detectors time resolution with different SiPM readout on T10 test beam.
H. Miyamoto, M. Teshima, B. Dolgoshein, R. Mirzoyan, J. Ninkovic
Development of Multi-pixel photon counters(2) M.Taguchi, T.Nakaya, M.Yokoyama, S.Gomi(kyoto) T.Nakadaira, K.Yoshimura(KEK) for KEKDTP photon sensor group.
M.Taguchi and T.Nobuhara(Kyoto) HPK MPPC(Multi Pixel Photon Counter) status T2K280m meeting.
Study of the Radiation Damage of Hamamatsu Silicon Photo Multipliers Wander Baldini Istituto Nazionale di Fisica Nucleare and Universita’ degli Studi di.
Performance of 1600-pixel MPPC for the GLD Calorimeter Readout Jan. 30(Tue.) Korea-Japan Joint Shinshu Univ. Takashi Maeda ( Univ. of Tsukuba)
Development of Multi-Pixel Photon Counters (1)
IFR Detector R&D status
IFR Detector R&D status
Activities at SMI/Vienna in testing the performance of SiPMs
Introduction to the physics of the SiPM
Progress report on SiPM development and its applications
Present Read Out Chain for the PANDA Barrel DIRC
Fast SiPM readout for PET
Status of Prototype Preparation and SiPM Characterization
Characteristics of S12045(X) photon sensors for GlueX
New Study for SiPMs Performance in High Electric Field Environment
APD, Introduction Victor Rykalin
Front-end electronic system for large area photomultipliers readout
Multi-Pixel Photon Counter Readout Board
X. Zhu1, 3, Z. Deng1, 3, A. Lan2, X. Sun2, Y. Liu1, 3, Y. Shao2
Tagger Microscope Detector & Electronics Status
R&D of MPPC for T2K experiment
SoLID EC photonsensor.
Test Setup SiPM Hamamatsu S C Pixel size( 25um)
R&D of MPPC in kyoto M.taguchi.
Presentation transcript:

1 SiPM Gain Test SiPM Multiple APD pixels operating at Geiger mode. Output is the sum of the outputs from all APD pixels. Advantages Compact size High Gain( 10E5 ~ 10E6) Low Bias Voltage(15~70V) Insensitive to Magnetic Field Challenges Temperature sensitive. Hamamatu SiPM samples

2 Setup for gain measurement Hamamatsu SiPMs( 3 models.) S XXC, XX = 25, 50, 100 Effective area 1x1mm2 25um(1600), 50um(400), 100um(100) Light tight box Apply Bias Voltage( ~70V) Use Preamplifier MITEQ, Gain(30dB), 1-500MHz Waveform readout by TDC (20)GS/s Varying threshold( 5mV ~50mV with 5mV step) 1500 events at each threshold.

3 Test Setup Preamp(MITEQ) Bias Voltage Power for Preamp Output LED SiPM Placed inside a light-shield box.

4 SiPM with 25um pixel( 1600pixels) Gain Estimation : 2x10E5 ( 2.75x10E5 from spec.) Assuming preamp gain = 30.

5 SiPM with 50um pixel( 400pixels) Estimated gain = 6.2x10E5 ( 7.49X10E5 from the spec)

6 SiPM with 100um pixel( 100pixels) Estimated gain = 1.1x10E6 ( 2.41X10E6 from the spec)

7 Plans Couple a SiPM to Crystal. Optical glue or grease. Expose to Radiation Source. Array of SiPM to Crystal (Block). Support & holding structure. Individual Bias voltage adjustment.