Zhiwen Zhao,UVa for EC group

Slides:



Advertisements
Similar presentations
CBM Calorimeter System CBM collaboration meeting, October 2008 I.Korolko(ITEP, Moscow)
Advertisements

Jin Huang Los Alamos National Lab.  Cited from March collaboration Meeting EC group Internal Communication Jin Huang 2 Preshower ID power drop significantly.
SoLID EC Design for IHEP 2012/10. Basic Features of Preliminary Design Based on COMPASS Shashlyk module design. 0.5mm lead/0.12mm air gap/1.5mm scintillator/0.12mm.
Jin Huang MIT SoLID Collaboration Meeting June 03, 2011, Jefferson Lab.
 Improve lepton-photon-hadron separation in the FMS to do  Some examples  J/Ψ physics in pAu and pp at forward rapidities  current status from chris.
Zhiwen Zhao (UVa), Paul Reimer (ANL) SoLID Collboration Meeting 2013/03.
SoLID EC Update Zhiwen Zhao 2012/05/22. Beam test update Coverage for PVDIS Road map.
SHMS Optics and Background Studies Tanja Horn Hall C Summer Meeting 5 August 2008.
Calorimeter Group. SoLID Collaboration Meeting 2.
SoLID baffle update Zhiwen Zhao 2013/04/02. Current Baffle The total distance from plane 1 to 6 is 150cm which is a few cm overlapping with endcap nose.
THE FORWARD PROTON DETECTOR AT DZERO Gilvan Alves Lafex/CBPF 1) MOTIVATION 2) DETECTOR OPTIONS 3) FPD R&D 4) OUTLOOK Lishep 98 Lafex/CBPF Feb 17, 1998.
A N DY Status Commissioning with colliding beams (p  +p  at  s=500 GeV) L.C.Bland, for AnDY 8 March 2011 Time Meeting, BNL.
Jin Huang Los Alamos National Lab.  Calorimeter defines the inner-R edge of large- angle acceptance  The proposal assumed a 2.5 degree polar angle gap.
Cherenkov Counters for SoLID Z.-E. Meziani on behalf of Simona Malace & Haiyan Gao (Duke University) Eric Fuchey (Temple University) SoLID Dry Run Review,
TOP counter overview and issues K. Inami (Nagoya university) 2008/7/3-4 2 nd open meeting for proto-collaboration - Overview - Design - Performance - Prototype.
SIDIS Background and Trigger Zhiwen Zhao 2013/11/18 Created 2014/07/06 Updated.
STUDY OF ULTRAREAR DECAYS K 0 → π 0 νν(bar) (Search of K 0 → π 0 νν(bar) decay at IHEP, project KLOD ) V.N. Bolotov on behalf of the collaboration JINR,
1 Lead glass simulations Eliane Epple, TU Munich Kirill Lapidus, INR Moscow Collaboration Meeting XXI March 2010 GSI.
The Electromagnetic Calorimeter – 2005 Operation J. Sowinski for the Collaboration and the Builders Indiana Univ. Michigan State Univ. ANL MIT BNL Penn.
ECAL PID1 Particle identification in ECAL Yuri Kharlov, Alexander Artamonov IHEP, Protvino CBM collaboration meeting
CALOR April Algorithms for the DØ Calorimeter Sophie Trincaz-Duvoid LPNHE – PARIS VI for the DØ collaboration  Calorimeter short description.
Performance of Shower Maximum Detectors Saori Itoh (Shinshu Univ.) GLC calorimeter group (KEK,Kobe,Konan,Niigata,Shinshu,Tsukuba) Introduction Detector.
Study of SoLID Baffle, Background and Trigger Zhiwen Zhao UVa, ODU&JLab 2014/07/09 1.
Nantes — 2008, July Analysis of results from EmCal beam test at CERN PS (and SPS) energies P. La Rocca & F. Riggi University & INFN Catania University.
SoLID DAQ A.Camsonne SoLID collaboration meeting November 8 th 2013.
SoLID magnet and yoke by using CLEO-II Zhiwen Zhao 2012/07.
Status of E14 G.Y.Lim IPNS, KEK. E14 Experiment Step-by-step approach to precise measurement of Br( K L    ) KEK-PS E391a J-PARC E14 (Step-1) J-PARC.
SoLID Background Update Zhiwen Zhao UVa 2013/11/08 1.
SoLID baffle update Zhiwen Zhao 2013/05/ top: 0.84e-4*Q2 bottom: by standard model formula from the code line 152 where “Abeam” is defined
1 Plannar Active Absorber Calorimeter Adam Para, Niki Saoulidou, Hans Wenzel, Shin-Shan Yu Fermialb Tianchi Zhao University of Washington ACFA Meeting.
A N DY Status Commissioning with colliding beams L.C.Bland, for AnDY 27 March 2012 Time Meeting, BNL.
21 November 2003Jacques Lefrancois1 HOSTING ELECTRONICS AND CONNECTIVITY Role of calorimeter system: Level 0 trigger +  reconstruction +e/  id. Level.
SHIP calorimeters at test beam I. KorolkoFebruary 2016.
Update on SoLID Jian-ping Chen, Jefferson Lab SoLID Collaboration Meeting November 8-9, 2013.
Simulation and reconstruction of CLAS12 Electromagnetic Calorimeter in GSIM12 S. Stepanyan (JLAB), N. Dashyan (YerPhI) CLAS12 Detector workshop, February.
PPAC Parallel Plate Avalanche Counter Edwin Norbeck University of Iowa For meeting at SLAC June 2, 2004.
Update on EM Calorimeters Calorimeter Group. Overview SoLID Collaboration Meeting 2.
Update on EM Calorimeters Calorimeter Group. SoLID Collaboration Meeting 2 SoLID EM Calorimeter Overview PVDIS forward angle SIDIS forward angle SIDIS.
1 SoLID Collaboration Meeting, July 9-10, 2014 Electromagnetic Calorimeters (EC) for SoLID The SoLID EC Working Group SoLID Collaboration Meeting July.
1 SoLID Collaboration Meeting, November 7-8, 2014 Electromagnetic Calorimeters (EC) for SoLID The SoLID EC Working Group SoLID Collaboration Meeting November7-8,
Update on EM Calorimeters
for SoLID Collaboration
The LHCb Calorimeter system
FCAL R&D towards a prototype of very compact calorimeter
Nick Markov, UCONN Valery Kubarovsky, JLAB
IHEP group Shashlyk activity towards TDR
Jin Huang Los Alamos National Lab
Simulation Updates on PVDIS EC
Physics with the LHCb calorimeter
SoLID Simulation Zhiwen Zhao 2016/08/27.
Dual-Readout Calorimeter: DREAM
Sergey Abrahamyan Yerevan Physics Institute APEX collaboration
Example of DAQ Trigger issues for the SoLID experiment
Simulation study for Forward Calorimeter in LHC-ALICE experiment
Muon Detector Jiawen ZHANG 16 September 2002.
Special Considerations for SIDIS
Kazuya Aoki For the PHENIX Collaborations. Kyoto Univ. / RIKEN
SoLID Simulation Zhiwen Zhao (UVa) SoLID Jlab Physics Division
CLEO II Magnet in Hall A for SoLID
SoLID SIDIS He3 Detection
SoLID Simulation and Trigger Update
SoLID SIDIS_He3 trigger
SoLID SIDIS_He3 Hit and Occupancy
PVDIS baffle material and neutron shielding
New SoLID Setup Detector Layout Magnet dimension EC size Cables
SoLID HGC Update Zhiwen Zhao 2016/01/13.
SoLID JPsi_LH2 Hit and Occupancy
SIDIS trigger study Yuxiang Zhao.
Update on EM Calorimeters
August 19th 2013 Alexandre Camsonne
Presentation transcript:

Zhiwen Zhao,UVa for EC group SoLID EC Update Zhiwen Zhao,UVa for EC group

What’s new PVDIS SIDIS Layout Cost update Using background produced with 1st plane baffle inner radius at 4cm (change from 2cm) which reduces low energy photons to about half, thus we have lower radiation dose and better e- efficiency and pi rejection Trigger study SIDIS forward angle EC moves back 10cm to make room for HGCC which doesn’t affect EC performance. Layout Cost update 8/19/2013

PVDIS Updated radiation dose VS layers (High radiation φ slice) Photon (EM) <- dominant! Photon (Pi0) Electron Pion- Pion+ Proton Improve by two-fold Soft EM γ Direct Pi0 γ 3rd Update New: 4th Update 8/19/2013

PVDIS Update on PID Mid radius, higher γ φ-band shown Other configuration also simulated Improvement Improvement Pion Efficiency Electron Efficiency 8/19/2013

PVDIS EC Performance 8/19/2013

PVDIS EC Trigger Effect 8/19/2013

PVDIS Rate on EC after trigger at 2GeV before trigger 8/19/2013

SoLID CLEO SIDIS EM Calorimeter (large angle) (forward angle) Target GEM Light Gas Cherenkov Heavy Gas Coil and Yoke MRPC Collimator SoLID CLEO SIDIS Hadron Scattered electron

SIDIS EC Performance 8/19/2013

Layout: forward angle EC (FAEC) from ANL 8/19/2013

Budget Estimate Update

Cost @ May 2013 Meeting IHEP (not including fibers) for 1700 PS+SH Preshower: $112k-$120k Shower: $549k-$651k Structure+assembly: $255k-$340k IHEP total: ($1.22-$1.51)M + 24% overhead (2012 rate) = ($1.51-$1.87)M Fiber connectors+tubing (Leoni+other): ~$300k WLS+clear fibers with diamond-cutting: $777k+$448k (S.G.) - $1.66M (Kuraray) PMTs: $640x2x(~1900)=$2.43M Total from above (no contingency): ($5.3M-$5.7M) if using S.G. Labor? Shipping? Contingency? correction: this should be “structure and assembly each”, but does not affect total IHEP $ on this page.

Cost @ May 2013 Meeting Based on 1700 modules No quote yet for SPD No quote yet for Shower fiber mirrors (IHEP) Updated fiber cost with diamond-tool cutting (do not know yet if IHEP can cut the fibers)

Cost Update Will be based on 1800 modules; SPD quote: $(40-70)k (IHEP very rough estimate) Quote for WLS fiber cutting, polishing, adding mirrors (IHEP): $50/piece a few years ago, now (20-30)% higher → $(108-117)k Need to order all WLS fibers in spools and ship to IHEP, need (10-15)% longer length to allow cutting. We still need to cut the other end of WLS fibers and all clear fibers (CLAS12 cutters).

Cost Update IHEP (not including fibers) for 1800 PS+SH Preshower: $113k-$122k Shower: $570k-$678k Structure+assembly: $540k-$720k Fiber cutting + mirrors: $108k-$117k IHEP total: ($1.38-$1.70)M + 30% overhead (changed from 24% for a conservative estimate) = ($1.80-$2.21)M Fiber connectors+tubing (Leoni+other): ~$300k WLS+clear fibers (S.G), rough ends: $234k+$564k PMTs: $640x2x(~1900)=$2.43M Total from above (no contingency): ($5.33M-$5.74M) Labor ($0.75M)? Shipping ($0.5M)? Contingency (30%): → $8.6M - $9.2M

Plan for Budgeting Plan to reduce cost: MAPMT study, now it's clear can do gain- matching at the FADC level. Any need for small- scale tests? – potential saving of up to $800k; Get a MAPMT quote; Customized PMT bases? (current base cost is $912k); Smaller PMTs for Preshower?

Possible Design Update – Multi-Anode PMTs Current Preshower readout: 1 PMT ($600)/module, but each module is read out by only a couple of fibers so we are wasting cross-sectional area of the PMT; MAPMT: about $100/channel → potential saving of PS PMT from $1.02M to $200k; To be studied: gain-matching between channels of one MAPMT. LHCb used specialized front-end electronic modules to produce digital triggers. We could use FADC directly, no need for FE-electronics.

Backup 8/19/2013

EC performance w/o background Cited from March collaboration Meeting Preshower ID power drop significantly at this bin 8/19/2013

Forth update of CLEO background Cutting 2cm away on 1st baffle inner radius Received background simulation from Zhiwen on May 24 8/19/2013

Updated: Per-event pion rate for 1+6 hexagon cluster at Mid radius, high radiation φ-slice 3rd Update Electron (mostly absorbed in Pb) Pion- Pion+ New 4th Update 8/19/2013

Trigger turn on curve for 2 GeV electron Shower Hex 1+6 trigger > 1 Trigger turn on curve for 2 GeV electron Shower Hex 1+6 trigger > 1.6 GeV Outer radius, higher γ φ-band, full bgd 100% pass for ~250 events/bin Physics , full bgd Middle radius, higer γ φ-band, full bgd Physics Pion Efficiency Electron Efficiency 8/19/2013

Trigger turn on curve for 2 Trigger turn on curve for 2.5 GeV electron Shower Hex 1+6 trigger > 2.1 GeV Middle radius, higher γ φ-band, full bgd Physics Inner radius, higer γ φ-band, full bgd Physics Pion Efficiency Electron Efficiency 8/19/2013

Readout occupancy per shower channel for ~75MeV zero suppression Improvement High radiation phi slice Low radiation phi slice 8/19/2013

8/19/2013

Third update of CLEO background Received background simulation from Zhiwen on May 19 Running background imbedding 8/19/2013

Background imbedding and distribution Mid-R, High Radiation phi slice Photon (6GHz/6+1 Hex cluster) Electron Pion- Pion+ Proton 8/19/2013

Updated: Per-event pion rate for 1+6 hexagon cluster at Mid radius, high radiation φ-slice Electron (mostly absorbed in Pb) Pion- Pion+ + 6 GHz photon not shown (3GHz for lower φ-radiation ) 8/19/2013

Update on PID with DC component removal (PS > MIP + Bgd + (2-3) σ) Outer radius, higher γ φ-band Due to Soft EM γ Outer radius, lower γ φ-band Pion Efficiency Electron Efficiency 8/19/2013

Update on PID with DC component removal (PS > MIP + Bgd + (2-3) σ) Outer radius, higher γ φ-band Mid radius, higher γ φ-band Due to Hadron rate Pion Efficiency Electron Efficiency 8/19/2013

More detail in PID cut Middle radius, lower γ φ-band, full bgd Pion Efficiency Electron Efficiency 8/19/2013

Update on PID with DC component removal (PS > MIP + Bgd + (2-3) σ) Inner radius, higher γ φ-band Inner radius, lower γ φ-band Pion Efficiency Electron Efficiency 8/19/2013

Trigger turn on curve for 2 GeV electron Shower Hex 1+6 trigger > 1 Trigger turn on curve for 2 GeV electron Shower Hex 1+6 trigger > 1.6 GeV Inner radius, higher γ φ-band, full bgd 100% pass for ~250 events/bin Physics , full bgd Middle radius, higer γ φ-band, full bgd Physics Pion Efficiency Electron Efficiency 8/19/2013

Trigger turn on curve for 2 Trigger turn on curve for 2.5 GeV electron Shower Hex 1+6 trigger > 2.1 GeV Middle radius, higher γ φ-band, full bgd Physics Outer radius, higer γ φ-band, full bgd Physics Pion Efficiency Electron Efficiency 8/19/2013

More detail in trigger cut Middle radius, higher γ φ-band, full bgd Shower Hex 1+6 trigger > 2.1 GeV Pion Efficiency Electron Efficiency 8/19/2013

Readout occupancy per shower channel for ~75MeV zero suppression High radiation phi slice Low radiation phi slice 8/19/2013