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Dose rate calculation in crystals of M0` test beam Presented by Andrei Uzunian, IHEP. Outline. Absorbed dose definition Dose rate profiles in crystals ( 120 Gev electrons, 150 GeV pions) Dose rate estimation for e & irradiations. Absorbed dose definition. E`. E.
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Dose rate calculation in crystals of M0` test beam Presented by Andrei Uzunian, IHEP
Outline • Absorbed dose definition • Dose rate profiles in crystals • ( 120 Gev electrons, 150 GeV pions) • Dose rate estimation for e & • irradiations
Absorbed dose definition E` E As a reminder: E V, m Absorbed dose, D = E / m(v),v 0 1 Gy = 1 J/kg = 6.24 106 GeV/g = 100 rad
Dose rate profiles (120 GeV electrons) Single crystal:2.3 x 2.3 x 23 cm3 Gaussian beam x = y = 0.1 cm x = y = 0.5 cm beam beam
Dose rate profiles (150 GeV pions ) Single crystal:2.3 x 2.3 x 23 cm3 Gaussian beam x = y = 0.1 cm x = y = 0.5 cm
Dose rate profiles 5x5 PWO matrix Dose rate profiles in central Xtal of 5x5 matrix Gaussian beam : beam Pions, 150 GeV Electrons, 120 GeV x = y= 0.5 cm x = y= 0.5 cm x = y= 2 cm x = y= 2 cm Longitudinal dose rate profiles in PWO crystal (2.3x2.3x23 cm3 ). MC simulation
Dose rate profiles 5x5 PWO matrix Dose rate profiles in central Xtal of 5x5 matrix Uniform beam:5 x 5 mm2 & 23 x 23 mm2 beam Electrons Pions E = 120 GeV, Intensity = 105 e/s E = 150 GeV, Intensity = 105 pi/s 5x5 mm2 uniform beam 5x5 mm2 uniform beam 22x22 mm2 uniform beam 22x22 mm2 uniform beam Longitudinal dose rate profiles in PWO crystal (2.3x2.3x23 cm3 ). MC simulation
M0’ irradiations data ECAL M0’ Testbeam Meeting, 25 September 2002 “DAQ-Trigger-data etc “ by J.Bourotte/J.Fay # 1566 # 1486 V.Katchanov, A.Uzunian, V.Grishin CERN, February 2003
Dose rate estimation Electrons 120 Gev, dose rate in shower max Crystal # 1652(intensity on Xtal = 1.5 x103 e/s )20 rad/hour Pions 150 Gev, dose rate on plateau Xtal “DAQ-Trigger-data etc “ Ann Van Lysebetten private communication, 25.09.02 by J.Bourotte/J.Fay as I understood … #1486 1.7 x104/s 25 rad/hour 8 x105/s 160 rad/h 8 x105/s 800 rad/h #1566 2.7 x104/s 40 rad/hour 7x105/s 140 rad/h 7x105/s 700 rad/h Intensity for gaussian beam: x = y = 2 cm on 5x5 matrix Intensity on Xtal Intensity on Xtal dose rate dose rate dose rate
Conclusion • To estimate the dose rate profiles in crystal under irradiation one need to know ( from M0` data): • the number of incident particles on the crystal front • and/or • the beam profile on the crystal matrix • and/or • the total energy absorbed in crystal during irradiation