Equalization between the electromagnetic and the hadronic signals is the condition for obtaining the linear response of a calorimeter to hadronic showers and an energy resolution that improves as the incident energy increases. In a calorimeter with silicon readout, the use of a combination of low-Z and high-Z materials as absorbers allows the transformation of the electron energy distribution of the incident showers in two media with different critical energies. As a result, the response of the calorimeter to incoming showers is modified to achieve the compensation condition (e/pi=1)
ELECTROMAGNETIC SHOWER ENERGY FILTERING EFFECT - A WAY TO ACHIEVE THE COMPENSATION CONDITION (E/PI=1) IN HADRONIC CALORIMETRY / E: BORCHI; M. BRUZZI; C. FURETTA; P. GIUBELLINO; F. LAMARCHE; F. LEMEILLEUR; C. LEROY; R. MACII; R. PALUDETTO; S. PENSOTTI; A. PENZO; L. RAMELLO; P.G.RANCOITA, L. RICCATI; A: SEIDMAN; L. VISMARA. - In: PHYSICS LETTERS. SECTION B. - ISSN 0370-2693. - STAMPA. - 222:(1989), pp. 525-532. [10.1016/0370-2693(89)90357-2]
ELECTROMAGNETIC SHOWER ENERGY FILTERING EFFECT - A WAY TO ACHIEVE THE COMPENSATION CONDITION (E/PI=1) IN HADRONIC CALORIMETRY
BRUZZI, MARA;
1989
Abstract
Equalization between the electromagnetic and the hadronic signals is the condition for obtaining the linear response of a calorimeter to hadronic showers and an energy resolution that improves as the incident energy increases. In a calorimeter with silicon readout, the use of a combination of low-Z and high-Z materials as absorbers allows the transformation of the electron energy distribution of the incident showers in two media with different critical energies. As a result, the response of the calorimeter to incoming showers is modified to achieve the compensation condition (e/pi=1)File | Dimensione | Formato | |
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