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The MEG Experiment T. Mori for the MEG Collaboration.

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The MEG Experiment T. Mori for the MEG Collaboration
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Page 1: The MEG Experiment T. Mori for the MEG Collaboration.

The MEG Experiment

T. Morifor the MEG Collaboration

Page 2: The MEG Experiment T. Mori for the MEG Collaboration.

MEG Physics• Clear signal of New Physics

Never occurs in the Standard Model

• SUSY GUT promisingUnification of 3 forces (LEP)

• Solar Neutrino mixing ( - e) is largeSuperKamiokande, SNO, KamLANDSeesaw mechanism

• Muon (g-2) may be SUSY

• And more… e

GUT, m

Page 3: The MEG Experiment T. Mori for the MEG Collaboration.

ICEPP, University of Tokyo Y. Hisamatsu, T. Iwamoto, T. Mashimo, S. Mihara, T. Mori, H. Nishiguchi, W. Ootani, K. Ozone, T. Saeki, R. Sawada, S. Yamada, S. YamashitaKEK, Tsukuba T. Haruyama, A. Maki, Y. Makida, A. Yamamoto, K. Yoshimura

Osaka University Y. Kuno

Waseda University T. Doke, J. Kikuchi, S. Suzuki, K. Terasawa, A. Yamaguchi, T. Yoshimura

Budker Institute, Novosibirsk L.M. Barkov, A.A. Grebenuk, D.G. Grigoriev, B, Khazin, N.M. Ryskulov

PSI, Villigen J. Egger, P. Kettle, M. Hildebrandt, S. Ritt

The MEG Collaboration

INFN & Pisa University A. Baldini, C. Bemporad, F.Cei, M.Grassi, F. Morsani, D. Nicolo’, R. Pazzi, F. Raffaelli, F. Sergiampietri, G. Signorelli

INFN & Pavia University A.de Bari, P. Cattaneo, G. Cecchet, G. Nardo’, M. Rossella

INFN & Genova University S. Dussoni, F. Gatti, D. Pergolesi, R. Valle

INFN Roma I D. Zanello

INFN & Lecce University S. Spagnolo, C. Chiri, P. Creti, M. Panareo, G. Palama’

Page 4: The MEG Experiment T. Mori for the MEG Collaboration.

Spokespersons: T.Mori, A.BaldiniTechnical Coordinator: S.Ritt

Detectors:• Beam line: PSI P.-R.Kettle• COBRA: KEK/Tokyo W.Ootani • Drift Chamber: PSI J.Egger• Timing Counter:Genova/Pavia/Roma G. Cecchet• Photon Detector: Tokyo/KEK/Pisa S.Mihara• Trigger: Pisa M.Grassi• DAQ/Elec.: PSI S.Ritt• Offline: S.Yamada/F.Cei/P.Cattaneo

The MEG Collaboration

Page 5: The MEG Experiment T. Mori for the MEG Collaboration.

The MEG Detector

Page 6: The MEG Experiment T. Mori for the MEG Collaboration.
Page 7: The MEG Experiment T. Mori for the MEG Collaboration.

Placed in SLS hall for the initial test. The installation in πE5 is planned this April.

COBRA arrived at PSI!

Page 8: The MEG Experiment T. Mori for the MEG Collaboration.

Excitation Test at PSIExcitation test was done between Jan.17-27,2004.Full excitation for SC and 8% excitation for NC because of limited utility at SLS.

Field mapping study is starting at SLS hall.

Page 9: The MEG Experiment T. Mori for the MEG Collaboration.

COBRA Magnet

2002 2003 2004 2005

Test MilestoneAssemblyDesign Manufactoring

Design Ass. TestWinding & Cryo.

Deliv.PSI

Test

Field Measurement

Platform

Page 10: The MEG Experiment T. Mori for the MEG Collaboration.

optional wall

small rail

electronics

LXestorage compressor

LN2 line

Trigger & DAQ

HV

triplets

separator

Transport solenoid

Experiment Area Layout

2003: established beam line design

Page 11: The MEG Experiment T. Mori for the MEG Collaboration.

Beam2002 2003 2004 2005

Test MilestoneAssemblyDesign Manufactoring

Studies

Solenoid BTS

Triplet I + II

Target

Part 1

New Separator

Part 2Beam Line Commissioning

BTS + COBRA coupling being studied

Page 12: The MEG Experiment T. Mori for the MEG Collaboration.

Drift Chamber

•Final design•Know how to build it

Page 13: The MEG Experiment T. Mori for the MEG Collaboration.

2002 2003 2004 2005

Test MilestoneAssemblyDesign Manufactoring

Full Prototype

Medium PrototypeCharge division & Cosmics

FP FP

Full Detector (18 DC)

Positron Tracker

Full Prototype Beam test

Page 14: The MEG Experiment T. Mori for the MEG Collaboration.

Timing Counter

Minimal CrossSection 39x30 mm

60º

PM section

PM activediameter

20º 20º8.5º

From COBRA center

105 cm

10º

25 cm

BB

0.75 T 1.05 T

-Final design in progress

-APD tests for Phi counters (trigger)

-Tests under B field planned

Page 15: The MEG Experiment T. Mori for the MEG Collaboration.

Timing Counter

Beam Test

2002 2003 2004 2005

Test MilestoneAssemblyDesign Manufactoring

Design

Assembly

PMT Evaluation PMT procur.

Procur & Manuf.

2” Fine Mesh 19 dyn. R5924

APD Evaluation APD test APD procur.

5x5 mm APD Hmamatsu

Page 16: The MEG Experiment T. Mori for the MEG Collaboration.

Carbon degrader

Lead Collimator at the beam line exit

LXe Photon Detector

Beam test at PiE1 in Sept-Dec 2003

Page 17: The MEG Experiment T. Mori for the MEG Collaboration.

Elementary process - (essentially) at rest captured on protons:

- p 0 n - p n

0

Photon spectrum

54.9 82.9 129MeV

M/2

M/2(1cos*)

M/2

*

E=55 MeV * =

Page 18: The MEG Experiment T. Mori for the MEG Collaboration.

Energy measurement

FWHM

Material, leakage

Backgroundrejection

Page 19: The MEG Experiment T. Mori for the MEG Collaboration.

~4.5%

Page 20: The MEG Experiment T. Mori for the MEG Collaboration.

FWHM [%]FWHM [%]

4.3±1.0 4.8±0.4 4.6±0.7

4.5±0.6 4.5±0.3 4.5±0.6

4.1±0.9 5.0±0.5 5.0±1.6

center ofthe detector

center ofF14

center ofF21

center ofF20

center ofF15

Page 21: The MEG Experiment T. Mori for the MEG Collaboration.

0

0.5

1

1.5

2

2.5

3

3.5

4

4.5

30 40 50 60 70 80 90

Sigma2 threshold

Res

olut

ion

(%)

Page 22: The MEG Experiment T. Mori for the MEG Collaboration.

#689[6-7], trigger:S1*Xe#689[6-7], trigger:S1*Xe

Page 23: The MEG Experiment T. Mori for the MEG Collaboration.

Laser-Compton scattering at TERAS

10, 20, 40MeV

Page 24: The MEG Experiment T. Mori for the MEG Collaboration.

PSI 2003TERAS 2003alpha

PSI 2003TERAS 2003alpha

Page 25: The MEG Experiment T. Mori for the MEG Collaboration.

L-R timing resolutionSigma = 65 psec

Page 26: The MEG Experiment T. Mori for the MEG Collaboration.

•Resolution improves in proportion to 1/sqrt(Npe).

•For 52.8 MeV psec + depth resolution.

•QE improvement and wave-form analysis will help to achieve better resolution.

KSR measurementOf electron beamIn 2002

Page 27: The MEG Experiment T. Mori for the MEG Collaboration.

Depth (cm)

E d

epos

it/u

nit l

engt

h electron

gamma

Page 28: The MEG Experiment T. Mori for the MEG Collaboration.

Xe – TC timing resolutionSigma = 100 psec

Page 29: The MEG Experiment T. Mori for the MEG Collaboration.

Position measurement

Page 30: The MEG Experiment T. Mori for the MEG Collaboration.
Page 31: The MEG Experiment T. Mori for the MEG Collaboration.

Background and Sensitivity

July 2002 NowGamma Energy (%) 4.0-4.5 4.5-5.0*e+ Timing (nsec) 0.1* 0.1*Gamma Timing 0.1 <0.23*Gamma Position (mm) 9-10.5 4.5-9.0*Gamma acceptance 0.6 >0.4*Muon rate (108/sec) 0.2-0.3 0.2-0.3Running Time (107sec) 2.6 4.0Accidental Rate (10-14) 2.2-3.5 2.3-3.5# Accidental Events 0.6 0.690% CL Limit (10-13) 1.0-1.6 1.2-1.7

* MeasuredMore detailed calculation necessary

Page 32: The MEG Experiment T. Mori for the MEG Collaboration.

QE abs=1 m abs=

5% 6% 2.0%

10% 6% 1.7%

20% 6% 1.5%

Page 33: The MEG Experiment T. Mori for the MEG Collaboration.

Problems arising…

- PMT instability

- neutron background

Page 34: The MEG Experiment T. Mori for the MEG Collaboration.

Photon Detector

2002 2003 2004 2005

Test MilestoneAssemblyDesign Manufactoring

Large Prototype Beam Test Beam Test

Vessel Design Assembly & Test

PMT Delivery + Testing

Refrigerator Manufactoring Assembly

Liq. Purification

Assembly Test

Manufactoring

Engineering runs

Page 35: The MEG Experiment T. Mori for the MEG Collaboration.

Prototype system tests• Debugging of the first board Type0 in Pisa

– A minor error fixed

• System assembled at PSI in Nov. ‘03– 100MHz synchronous operation– Negligible transmission error rate– Satisfactory operation of the analog interface

• Connection with the Large Prototype

– PMT from #0 to #31

– Collected data

• Alpha

• Led

• 0

Trigger / DAQ / Electronics

Page 36: The MEG Experiment T. Mori for the MEG Collaboration.

The boardType0

PMT inputs

LVDS transm.

LVDS receiv.

FADC

FPGA

configuration EPROMS

Differential drivers

package error solved with a patch board

control signals.

Page 37: The MEG Experiment T. Mori for the MEG Collaboration.

Internal trigger

Time [10 ns]

Am

plit

ud

e

[mV

]

Max. Amplitude (2)

Index of Max

Amplitude sum

Pulse time

Inpu

t cy

clic-b

uffer

boar

d 0

Out

put cy

clic-

buffer

boa

rd 0

Page 38: The MEG Experiment T. Mori for the MEG Collaboration.

Full System

2002 2003 2004 2005

Test MilestoneAssemblyDesign Manufactoring

Prototype Board

Final Prototype

Trigger

now

Page 39: The MEG Experiment T. Mori for the MEG Collaboration.

PMC carrier board

Joint effort with the MAGIC experiment (Uni. of Siena and INFN Pisa)

– Clock control (locking to external source)

– DRS readout with FADC

– DRS control signals

DRS

1st Prototype

Wave form digitizer - DRS

Page 40: The MEG Experiment T. Mori for the MEG Collaboration.

DRS (DAQ)

2002 2003 2004 2005

Test MilestoneAssemblyDesign Manufactoring

2nd Prototype

Tests1st Prototype

Boards & Chip Test

now

Page 41: The MEG Experiment T. Mori for the MEG Collaboration.

By May 2004: -Finish merging LXe geometry & scintillation tracking (Cei/Yamada)-ZEBRA framework for MC outputs (Cattaneo)

By July 2004:-Detector digitization (TC:Paolo, XE: Yamada/Cei, DC: Nishiguchi)

Unified MC available for the DC beam test in summer

Offline Software

More people are joining the efforts now

Coordination meeting planned in May-June

Page 42: The MEG Experiment T. Mori for the MEG Collaboration.

Conclusion


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