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ALICE-V0A design, construction & proto beam-test Arturo Menchaca-Rocha for UNAM: Instituto de Fisica...

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ALICE-V0A design, construction & proto beam-test Arturo Menchaca-Rocha for NAM: Instituto de Fisica & Instituto de Ciencias Nucleares CINVESTAV: Mexico & Merida Valparaiso, Chile, 200
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Page 1: ALICE-V0A design, construction & proto beam-test Arturo Menchaca-Rocha for UNAM: Instituto de Fisica & Instituto de Ciencias Nucleares CINVESTAV: Mexico.

ALICE-V0Adesign, construction & proto beam-test

Arturo Menchaca-Rocha

for

UNAM: Instituto de Fisica & Instituto de Ciencias Nucleares

CINVESTAV: Mexico & Merida

Valparaiso, Chile, 2006

Page 2: ALICE-V0A design, construction & proto beam-test Arturo Menchaca-Rocha for UNAM: Instituto de Fisica & Instituto de Ciencias Nucleares CINVESTAV: Mexico.

Outline

• Aim of V0

• Design and construction details

• Performance and proto test results

• Radiation hardness of the components

• Final V0A construction

• Current status

• Timetable

Page 3: ALICE-V0A design, construction & proto beam-test Arturo Menchaca-Rocha for UNAM: Instituto de Fisica & Instituto de Ciencias Nucleares CINVESTAV: Mexico.

V0 detector tasks

V0 has to :

• Give a fast minimum bias trigger (MB) for both pp and heavy

ion collisions

•Provide a fast veto for beam gas interactions (BG) during the

pp running mode

•Provide a fast rough centrality trigger based on forward

multiplicities

•Provide a fast estimation of the luminosity in the pp and heavy

ion scenarios

•Provide a fast wake-up signal for the TRD

Page 4: ALICE-V0A design, construction & proto beam-test Arturo Menchaca-Rocha for UNAM: Instituto de Fisica & Instituto de Ciencias Nucleares CINVESTAV: Mexico.

V0 is a small-angle detector made of two independent

arrays of fast scintillator counters, named V0A and V0C

V0A is being built by Mexican Institutes (UNAM+CINVESTAV)

V0C is built by a French group at Lyon

Each counter is segmented in 4 rings and each ring has

8 independent modules

The counters are read by WLS/clear fibers coupled to

PMTs working inside the ALICE magnetic field

Brief description

Page 5: ALICE-V0A design, construction & proto beam-test Arturo Menchaca-Rocha for UNAM: Instituto de Fisica & Instituto de Ciencias Nucleares CINVESTAV: Mexico.

Position of the V0 arrays

V0C

V0A

3.40 m3.33 m

90 cm

Page 6: ALICE-V0A design, construction & proto beam-test Arturo Menchaca-Rocha for UNAM: Instituto de Fisica & Instituto de Ciencias Nucleares CINVESTAV: Mexico.

Segmentation and dimensions

Page 7: ALICE-V0A design, construction & proto beam-test Arturo Menchaca-Rocha for UNAM: Instituto de Fisica & Instituto de Ciencias Nucleares CINVESTAV: Mexico.

►The V0 arrays cover the following η ranges:

Pseudorapidity coverage

V0A V0C

Ring 1 5.1/4.5 -3.7/-3.2

Ring 2 4.5/3.9 -3.2/-2.7

Ring 3 3.9/3.4 -2.7/-2.2

Ring 4 3.4/2.8 -2.2/-1.7

Page 8: ALICE-V0A design, construction & proto beam-test Arturo Menchaca-Rocha for UNAM: Instituto de Fisica & Instituto de Ciencias Nucleares CINVESTAV: Mexico.

The two arrays have different

designs but use the same materials:

► Plastic scintillator BC404

Width: V0A, 2.5 cm; V0C, 2cm

► 1mm diameter WLS BC9929AMC

► 1.1 mm diameter clear fiber

BCF98MC of a few meters

► H6153-70 PMT

The design of the V0 arrays

Design 1 V0A

PM

Teflon foil

connector WLS fibres

optical fibres

Design 2 V0C

connector

PM

Teflon foil

WLS fibres

optical fibres

Design 1 V0A

PM

Teflon foil

connector WLS fibres

optical fibresPM

Teflon foil

connector WLS fibres

optical fibresPM

Teflon foil

connector WLS fibres

optical fibresPM

Teflon foil

connector WLS fibres

optical fibres

Design 2 V0C

connector

PM

Teflon foil

WLS fibres

optical fibres

connector

PM

Teflon foil

WLS fibres

optical fibres

Page 9: ALICE-V0A design, construction & proto beam-test Arturo Menchaca-Rocha for UNAM: Instituto de Fisica & Instituto de Ciencias Nucleares CINVESTAV: Mexico.

V0 triggersThe system can generate twelve level 0 triggers: 6 of class AND (V0A and V0C) and 6 of class OR (V0A or V0C): one minimum bias trigger (MB), two beam-gas triggers (BG) three centrality triggers (only 2 sent to the CTP)

Recorded information when L2 is supplied: for the events of interest and the (+5, -5) events around: charge seen by all segments (integrated charge) time of all segments (leading and tailing edges) statement of all flags for all segments for data control and monitoring: various parameters (not yet fully defined)

Signals delivered to other detectors: wake-up for the TRD eventually, centrality information for the EMCal

Page 10: ALICE-V0A design, construction & proto beam-test Arturo Menchaca-Rocha for UNAM: Instituto de Fisica & Instituto de Ciencias Nucleares CINVESTAV: Mexico.

MB and BG interactions

to

tV0C<totV0C>totV0A>to

BG

tV0A<to

BG

Page 11: ALICE-V0A design, construction & proto beam-test Arturo Menchaca-Rocha for UNAM: Instituto de Fisica & Instituto de Ciencias Nucleares CINVESTAV: Mexico.

The basic idea of MB and BG triggers

• Set four independent observation windows

• Two at the expected time of arrival of particles produced in beam gas interactions:

BGA centered @ - 11.3 ns

BGC centered @ - 3.0 ns

• Two at the expected time of arrival of particles produced in pp collisions

BBA centered @ + 11.3 ns

BBC centered @ + 3.0 ns

• The first hit produces the window sub trigger

• Form logical combinations with them

Page 12: ALICE-V0A design, construction & proto beam-test Arturo Menchaca-Rocha for UNAM: Instituto de Fisica & Instituto de Ciencias Nucleares CINVESTAV: Mexico.

BG interactions at next bunch crossing

Interactions of gas with beam particles in the next bunch and the current bunch crossing will arrive at V0A (if happening in the RB24 side) at 25-11.3 ns = 13.7 ns,

Depending on the BBA window size they may mimic particles produced at the IP in the current bunch crossing

At the start of LHC this will not be a problem: next bunch will be 100 ns later, not 25 ns.

25 ns

11.3 ns13.7 ns

V0A

Page 13: ALICE-V0A design, construction & proto beam-test Arturo Menchaca-Rocha for UNAM: Instituto de Fisica & Instituto de Ciencias Nucleares CINVESTAV: Mexico.

Efficiency of the MB trigger in %

Process BBA BBC BBA or BBC BBA and BBC

q q qq 96.2 94.5 99.7 91.0

q g q g 99.6 99.7 100 99.4

g g qq 100 100 100 100

g g g g 99.9 99.9 100 99.9

Non diffractive 99.1 98.7 99.9 97.8

pp pY 73.2 45.1 74.6 43.8

pp Xp 39.2 70.0 71.4 37.8

pp XY 68.0 65.1 86.2 46.8

Diffractive 61.2 60.6 78.4 43.3

MB 87.6 87.2 93.4 81.4

Parameters used: 6ns windows, 0.6ns V0 resolution, 7.5 cm RMS of bunch in z

Page 14: ALICE-V0A design, construction & proto beam-test Arturo Menchaca-Rocha for UNAM: Instituto de Fisica & Instituto de Ciencias Nucleares CINVESTAV: Mexico.

Dependence on the size of the BBA window (2/2)

Process BBA BBC BBA or BBC BBA and BBC

q q qq 96.2 89.6 94.5 99.7 99.2 91.0 85.0

q g q g 99.6 98.9 99.7 100 100 99.4 98.7

g g qq 100 100 100 100 100 100 100

g g g g 99.9 99.2 99.9 100 100 99.9 99.2

Non diffractive 99.1 97.1 98.7 99.9 99.8 97.8 96.0

pp pY 73.2 66.0 45.1 74.6 70.8 43.8 40.4

pp Xp 39.2 33.6 70.0 71.4 71.1 37.8 32.5

pp XY 68.0 59.1 65.1 86.2 83.9 46.8 40.3

Diffractive 61.2 53.8 60.6 78.4 76.3 43.3 38.1

MB 87.6 84.0 87.2 93.4 92.7 81.4 78.5

Parameters used: 1ns BBA window and V0A at 3.33 m

Only a few percent loss in efficiency: the first hit produces the trigger. Inefficiency from low multiplicity events

Page 15: ALICE-V0A design, construction & proto beam-test Arturo Menchaca-Rocha for UNAM: Instituto de Fisica & Instituto de Ciencias Nucleares CINVESTAV: Mexico.

V0 requirements

• ~ 100% efficiency for charged particles

• Time resolution < 1 ns. Aim is 600 ps.

• Provide L0 trigger information with no dead-time.

• Work in the magnetic field ( 0.5 T)

Page 16: ALICE-V0A design, construction & proto beam-test Arturo Menchaca-Rocha for UNAM: Instituto de Fisica & Instituto de Ciencias Nucleares CINVESTAV: Mexico.

V0A Megatile design

Page 17: ALICE-V0A design, construction & proto beam-test Arturo Menchaca-Rocha for UNAM: Instituto de Fisica & Instituto de Ciencias Nucleares CINVESTAV: Mexico.

Prototypes

Prototype 3

Prototype 4

V0A Sector 0

Page 18: ALICE-V0A design, construction & proto beam-test Arturo Menchaca-Rocha for UNAM: Instituto de Fisica & Instituto de Ciencias Nucleares CINVESTAV: Mexico.

6 mm

= 1 mm

4 mm

25 mm

10 mm

Page 19: ALICE-V0A design, construction & proto beam-test Arturo Menchaca-Rocha for UNAM: Instituto de Fisica & Instituto de Ciencias Nucleares CINVESTAV: Mexico.

QuickTime™ and aTIFF (LZW) decompressor

are needed to see this picture.

Page 20: ALICE-V0A design, construction & proto beam-test Arturo Menchaca-Rocha for UNAM: Instituto de Fisica & Instituto de Ciencias Nucleares CINVESTAV: Mexico.
Page 21: ALICE-V0A design, construction & proto beam-test Arturo Menchaca-Rocha for UNAM: Instituto de Fisica & Instituto de Ciencias Nucleares CINVESTAV: Mexico.

Machining the final detector

Page 22: ALICE-V0A design, construction & proto beam-test Arturo Menchaca-Rocha for UNAM: Instituto de Fisica & Instituto de Ciencias Nucleares CINVESTAV: Mexico.

Baseline of Construction

• 25 mm BC404 scintillator.• 4 Rings, 8 Sectors in two halves (vertical split).• Megatile construction: elements glued to each other with

Bicron white epoxy (TiO2).• Keyhole slots for WLS fibers = 1 mm, fiber exits 5 mm

into the next ring and this part is covered with white paint.

• For the last ring the fibers exit straight.• The WLS fibers are covered with Thermofit tubing

when they exit the scintillator up to the PMT connector.• The front and back faces are covered with reflecting

Teflon, and then with black tape.

Page 23: ALICE-V0A design, construction & proto beam-test Arturo Menchaca-Rocha for UNAM: Instituto de Fisica & Instituto de Ciencias Nucleares CINVESTAV: Mexico.

Gluing the sectors of the Megatile

Page 24: ALICE-V0A design, construction & proto beam-test Arturo Menchaca-Rocha for UNAM: Instituto de Fisica & Instituto de Ciencias Nucleares CINVESTAV: Mexico.

Detector construction

• The two halves have been machined

• One of them is being tested with cosmics

Page 25: ALICE-V0A design, construction & proto beam-test Arturo Menchaca-Rocha for UNAM: Instituto de Fisica & Instituto de Ciencias Nucleares CINVESTAV: Mexico.

Wavelength Shifting Fibers

• The WLS fibers have been polished and one end has been aluminized and covered with SiO2.

Page 26: ALICE-V0A design, construction & proto beam-test Arturo Menchaca-Rocha for UNAM: Instituto de Fisica & Instituto de Ciencias Nucleares CINVESTAV: Mexico.
Page 27: ALICE-V0A design, construction & proto beam-test Arturo Menchaca-Rocha for UNAM: Instituto de Fisica & Instituto de Ciencias Nucleares CINVESTAV: Mexico.

Assembly of fibers in the detector

Page 28: ALICE-V0A design, construction & proto beam-test Arturo Menchaca-Rocha for UNAM: Instituto de Fisica & Instituto de Ciencias Nucleares CINVESTAV: Mexico.

Mechanical support & PMT boxes

• The support boxes are half an Octagon of = 1600 mm. Made out of 5 mm thick composite panels from Euro-composites. The inner hole is =80 mm.

• The V0A counters are fixed to the panel that will be fixed to the support provided by the TC.

• The 8 boxes for the PMs will also be fixed to the same panel on the ribs along the perimeter that will serve to close the box.

• The lid will be screwed on the ribs and on the dead area of the V0A counters.

• The alignment to 1mm will be done on the feet of the support to the rails.

Page 29: ALICE-V0A design, construction & proto beam-test Arturo Menchaca-Rocha for UNAM: Instituto de Fisica & Instituto de Ciencias Nucleares CINVESTAV: Mexico.

V0A arrayPM

all fibres from a sector

fibres gathered in 4 bundlesfiber length 3 m

Page 30: ALICE-V0A design, construction & proto beam-test Arturo Menchaca-Rocha for UNAM: Instituto de Fisica & Instituto de Ciencias Nucleares CINVESTAV: Mexico.

Front and lateral views

Page 31: ALICE-V0A design, construction & proto beam-test Arturo Menchaca-Rocha for UNAM: Instituto de Fisica & Instituto de Ciencias Nucleares CINVESTAV: Mexico.
Page 32: ALICE-V0A design, construction & proto beam-test Arturo Menchaca-Rocha for UNAM: Instituto de Fisica & Instituto de Ciencias Nucleares CINVESTAV: Mexico.

V0A support box Euro-Composites panels 3mm

EC-PA 115G and EC-PA 119GNomex® honeycomb core with epoxy/2S-UD-glass skins. Application: Aircraft flooring for under seat and aisle area, meeting the FAR 25853(a) requirementsEC-PA 233 through EC-PA 238Nomex® honeycomb core with different types and numbers of phenolic/glass skin layer. Application: Aircraft interiors where very stringent FST-requirements are obligatory. Above panel types meet ATS1000.001.EC-PA 323G to EC-PA 329GNomex® honeycomb core with combined epoxy and phenolic skins, featuring the properties of both panel series EC-PA 1XX and EC-PA 2XX. These paneltypes excel in increased toughness combined with entire FST- properties

Page 33: ALICE-V0A design, construction & proto beam-test Arturo Menchaca-Rocha for UNAM: Instituto de Fisica & Instituto de Ciencias Nucleares CINVESTAV: Mexico.

Beam tests

• The measurements were done using the Lyon Pad chamber and 4 scintillators in trigger using a blown up beam spot of 6 GeV/c negative hadrons from the PS T10 beam

Page 34: ALICE-V0A design, construction & proto beam-test Arturo Menchaca-Rocha for UNAM: Instituto de Fisica & Instituto de Ciencias Nucleares CINVESTAV: Mexico.

Prototype 3 Amplitude Scan Top

Amplitude nonuniformity of the order of +/- 5% both in vertical and horizontal

The detector was moved with respect to the trigger counters to cover the top and bottom parts.

Page 35: ALICE-V0A design, construction & proto beam-test Arturo Menchaca-Rocha for UNAM: Instituto de Fisica & Instituto de Ciencias Nucleares CINVESTAV: Mexico.

The amplitude nonuniformities are approximately the same in the top part

Prototype 3 Amplitude Scan Bottom

Page 36: ALICE-V0A design, construction & proto beam-test Arturo Menchaca-Rocha for UNAM: Instituto de Fisica & Instituto de Ciencias Nucleares CINVESTAV: Mexico.

Setup 3 Time distribution

= 0.54 ns Npe = 26

Page 37: ALICE-V0A design, construction & proto beam-test Arturo Menchaca-Rocha for UNAM: Instituto de Fisica & Instituto de Ciencias Nucleares CINVESTAV: Mexico.

Test Prototype 4

•Tested at the PS •2 cm BC404 scintillator•1mm WLS fibres BC9929A-MC•1.1 mm f 2 m long optical fibres BCF98-MC•Hamamatsu H6153-70 PMT

500 – 600 ps

MIP = 28 – 34 – 42 p.e.

Page 38: ALICE-V0A design, construction & proto beam-test Arturo Menchaca-Rocha for UNAM: Instituto de Fisica & Instituto de Ciencias Nucleares CINVESTAV: Mexico.

First Test V0A Sector 0 with cosmics Ring 2

Page 39: ALICE-V0A design, construction & proto beam-test Arturo Menchaca-Rocha for UNAM: Instituto de Fisica & Instituto de Ciencias Nucleares CINVESTAV: Mexico.

Time resolution corrected for trigger jitter 648 ps

Page 40: ALICE-V0A design, construction & proto beam-test Arturo Menchaca-Rocha for UNAM: Instituto de Fisica & Instituto de Ciencias Nucleares CINVESTAV: Mexico.

Time resolution with 2m clear fibers

Page 41: ALICE-V0A design, construction & proto beam-test Arturo Menchaca-Rocha for UNAM: Instituto de Fisica & Instituto de Ciencias Nucleares CINVESTAV: Mexico.

Test Ring0 with 75 cm WLS fibers only

Page 42: ALICE-V0A design, construction & proto beam-test Arturo Menchaca-Rocha for UNAM: Instituto de Fisica & Instituto de Ciencias Nucleares CINVESTAV: Mexico.

Time distribution 75 cm WLS fibers only

Page 43: ALICE-V0A design, construction & proto beam-test Arturo Menchaca-Rocha for UNAM: Instituto de Fisica & Instituto de Ciencias Nucleares CINVESTAV: Mexico.

Time resolution WLS only is 80% better

Page 44: ALICE-V0A design, construction & proto beam-test Arturo Menchaca-Rocha for UNAM: Instituto de Fisica & Instituto de Ciencias Nucleares CINVESTAV: Mexico.

Radiation dose in 10 years of ALICE

20

100/200

50

10

6020

6

10V0C

V0A

Dose in krad

Page 45: ALICE-V0A design, construction & proto beam-test Arturo Menchaca-Rocha for UNAM: Instituto de Fisica & Instituto de Ciencias Nucleares CINVESTAV: Mexico.

Irradiation of materials of the V0A

• A systematic measurement of the radiation effects on the materials of the V0A has been performed using the gamma cell of the ICN.– Detector prototype with scintillator and WLS

fibers, characterized with a 90Sr source and PMT.– WLS fibers only, characterized with a blue LED

and a PIN-Diode measuring the produced and transmitted green light.

Page 46: ALICE-V0A design, construction & proto beam-test Arturo Menchaca-Rocha for UNAM: Instituto de Fisica & Instituto de Ciencias Nucleares CINVESTAV: Mexico.

46

Detector Prototype Resultsafter Irradiation with 200 Krad.

The signal after irradiation drops to 56% and recovers to 80 % Of the original in 350 hours.

Page 47: ALICE-V0A design, construction & proto beam-test Arturo Menchaca-Rocha for UNAM: Instituto de Fisica & Instituto de Ciencias Nucleares CINVESTAV: Mexico.

WLS fiber irradiation

• The fiber: 30 cm long,1 mm Ø BCF9929A(double cladding) WLS fiber.

• Setup: On one extreme the fiber is excited from the side with a blue LED on the other a PIN-Diode measures the transmitted green light and the voltage is recorded with a precision electrometer.

• The reference is the average of 50 measurements of the voltage before irradiation, removing and re-inserting the fiber in the setup.

• The fiber was irradiated with a dose over 50 minutes of 50, 100, 200, 300 Krad of ‘s from 60Co source with 7 krad/min.

• The fiber is inserted in the measuring setup and the voltage is recorded every 30 min, 10 min after the irradiation ended.

Page 48: ALICE-V0A design, construction & proto beam-test Arturo Menchaca-Rocha for UNAM: Instituto de Fisica & Instituto de Ciencias Nucleares CINVESTAV: Mexico.

• white – 50 kradgreen – 100 kradred – 200 kradblue – 300 kradRelative amplitude referred to the corresponding mean value measured before irradiation

• All of the samples irradiated at the same dose rate: 7 krad/min

Page 49: ALICE-V0A design, construction & proto beam-test Arturo Menchaca-Rocha for UNAM: Instituto de Fisica & Instituto de Ciencias Nucleares CINVESTAV: Mexico.

Consequences for V0A

• A maximal dose of 150 Krad in 10 years is calculated for Ring 0 of V0A.

• A loss of signal of < 20% can be expected, which can be recovered by a voltage increase.

• Just in case, 2 sets of fibers for Ring 0 will be prepared as spares and can easily be exchanged.

Page 50: ALICE-V0A design, construction & proto beam-test Arturo Menchaca-Rocha for UNAM: Instituto de Fisica & Instituto de Ciencias Nucleares CINVESTAV: Mexico.

Current status

• V0A detector construction finished

• Will be tested with cosmics till March

• In April will be sent to CERN

• In May-June 2007 it’ll be calibrated with 7 GeV/c pions at CERN

• On 27 de June 2007 will be installed on ALICE

• On October 2007: data taking


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