CLAS12 Pre-shower H. Voskanyan (YerPhI)  R&D: Test measurements  Prototype CLAS Collaboration, CLAS12 TWG Meeting February 28, 2007, JLAB.

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CLAS12 Pre-shower H. Voskanyan (YerPhI)  R&D: Test measurements  Prototype CLAS Collaboration, CLAS12 TWG Meeting February 28, 2007, JLAB

H. Voskanyan, CLAS Collaboration, CLAS12 TWG Meeting, February 28, 2007, JLAB R&D: Test of the readout components and the prototype G. Asryan, H. Voskanyan, Hall B engineering Tests include:  measurements of the relative light yield for several different scintillator-fiber-PMT combinations  study of the multiple fiber readout  study the light attenuation and the time characteristics for the scintillator-fiber-PMT combinations with the highest light yield The final combination of scintillator-fiber-PMT will be selected based on performance and the price Build a prototype to check the design of individual elements, to test assembly procedures, and the pre-shower performance

H. Voskanyan, CLAS Collaboration, CLAS12 TWG Meeting, February 28, 2007, JLAB Pre-shower components for test

H. Voskanyan, CLAS Collaboration, CLAS12 TWG Meeting, February 28, 2007, JLAB Test setup (in the EEL) Trigger PMT XP2262 Test scintillator with grooves FNAL, Kharkov, ELJEN Test PMTs R7899, R6095, R1450 XP2802 Test WS fibers Y11(sc-1mm, 1.5mm, 2mm; mc-1mm) BC-91A, BC-92 (1mm) Rad. Sources: 90 Sr and 207 Bi Cosmic muons with second trigger PMT 4 m long dark box with moving cart and support fixtures (Hall B engineering) Simple DAQ (CODA) – FASTBUS with LeCroy ADC

H. Voskanyan, CLAS Collaboration, CLAS12 TWG Meeting, February 28, 2007, JLAB Measurements technique For each PMT, a single photo-electron peak position and the width, at given HV, was determined using two Gaussian fit to the ADC distributions of attenuated light For each combination, the average number of photo-electrons was extracted as a function trigger PMT ADC value, the fit function: Fit parameters: c 1, c 2, c 3, and n pe

H. Voskanyan, CLAS Collaboration, CLAS12 TWG Meeting, February 28, 2007, JLAB Fits to ADC distributions from 90 Sr Hamamatsu R7899EG, Green sensitive photocathode FNAL scintillator with one groove, Kuraray Y-11 single-clad fiber Hamamatsu R6095, 15% QE at 500nA Fit to the pedestal and single photoelectron peak

H. Voskanyan, CLAS Collaboration, CLAS12 TWG Meeting, February 28, 2007, JLAB Fit to the ADC distributions from 90 Sr for R6095 PMT of different HV FNAL scintillator with 1 grove Kuraray 1mm, single-clad WSF PMT Hamamatsu R6095 Fit to slices of trigger PMT ADC distribution Number of photo-electrons ADC Trigger PMT 800 V 850 V 900 V

H. Voskanyan, CLAS Collaboration, CLAS12 TWG Meeting, February 28, 2007, JLAB Fit to the ADC distributions from 90 Sr for different PMT FNAL scintillator with 1 groove Kuraray 1mm, single-clad WSF Fit to slices of trigger PMT ADC distribution Number of photo-electrons ADC Trigger PMT R pe R pe XP pe R pe

H. Voskanyan, CLAS Collaboration, CLAS12 TWG Meeting, February 28, 2007, JLAB Fit to the ADC distributions from 90 Sr for R6095 PMT at different scintillators Kuraray 1mm, single-clad WSF PMT Hamamatsu R6095 Fit to slices of trigger PMT ADC distribution Number of photo-electrons ADC Trigger PMT ELJEN 2.2 pe FNAL 6.9 pe Kharkov 6.1 pe

H. Voskanyan, CLAS Collaboration, CLAS12 TWG Meeting, February 28, 2007, JLAB Fit to the ADC distributions from 90 Sr for different positions of source Fit to slices of trigger PMT ADC distribution Number of photo-electrons ADC Trigger PMT WSF Sr with collimator WSF-3 WSF-2 WSF-1 Kharkov scint. Kuraray 1mm SC WSF-s PMT R6095

H. Voskanyan, CLAS Collaboration, CLAS12 TWG Meeting, February 28, 2007, JLAB Fit to the ADC distributions from 90 Sr for R6095 PMT of different positions source Fit to slices of trigger PMT ADC distribution Number of photo-electrons ADC Trigger PMT Test PMT 90 Sr with collimator Kharkov scint. Kuraray 1mm, SC WSF

H. Voskanyan, CLAS Collaboration, CLAS12 TWG Meeting, February 28, 2007, JLAB Fit to the ADC distributions from 90 Sr Scintillator strips with 3-grooves, Kharkov. ADC distributions of R6095 for one, two, and three fiber readout ADC Trigger PMT 1 WSF 3 WSF 2 WSF

H. Voskanyan, CLAS Collaboration, CLAS12 TWG Meeting, February 28, 2007, JLAB Absolute light yield with cosmic muons Second trigger counter 2 MeV 7-8 photoelectrons FNAL scintillator, 1 cm thick, with 1mm single-clad WS fiber, Kuraray Y-11, PMT Hamamatsu R6095

H. Voskanyan, CLAS Collaboration, CLAS12 TWG Meeting, February 28, 2007, JLAB Summary of test measurements By performance, the best PMT is the HAMAMATSU R7899EG, $280/each. Photoelectron yield of the HAMAMATSU R6095, selected with QE>16% at 500nA, for the same scintillator and fiber, is lower only by 25%. Price for R6095 is $180($160). All other PMTs, yet with green sensitive photocathode, did not perform better than R7899EG and are expensive, >$250 Multi-clad fiber produces 20% more light than a single-clad fiber, but 30% more expensive FNAL extruded scintillator with Y-11 fiber has the best light yield, mostly due to good reflective cover. It is also reasonable in price, $20-$25/meter. Scintillators from Kharkov are close, but will need some R&D to match the performance of the FNAL scintillators The best combination by the light yield and price is: FNAL scintillator – Kurary Y11 single clad – HAMAMATSU R6095. Light yield ~11p.e./MeV for 3 fibers is expected (light yield for FEC readout ~7p.e./MeV)

H. Voskanyan, CLAS Collaboration, CLAS12 TWG Meeting, February 28, 2007, JLAB Pre-shower Prototype (Side View) WSF (KURARAY 1mm, SC FNAL scintilliator strip 45X10mm, 3 grooves 2 Lead 2.2mm

H. Voskanyan, CLAS Collaboration, CLAS12 TWG Meeting, February 28, 2007, JLAB Pre-shower prototype (Top View)

H. Voskanyan, CLAS Collaboration, CLAS12 TWG Meeting, February 28, 2007, JLAB Preshower prototype