International audienceA highly granular electromagnetic calorimeter with scintillator strip readout is being developed for future linear collider experiments. A prototype of 21.5 X0 depth and 180×180mm2 transverse dimensions was constructed, consisting of 2160 individually read out 10×45×3mm3 scintillator strips. This prototype was tested using electrons of 2–32 GeV at the Fermilab Test Beam Facility in 2009. Deviations from linear energy response were less than 1.1%, and the intrinsic energy resolution was determined to be (12.5±0.1(stat.)±0.4(syst.))%∕E[GeV]⊕(1.2±0.1(stat.)−0.7+0.6(syst.))% , where the uncertainties correspond to statistical and systematic sources, respectively
The CALICE collaboration is studying the design of high performance electromagnetic and hadronic cal...
The CALICE collaboration is studying the design of high performance electromagnetic and hadronic cal...
The CALICE collaboration is studying the design of high performance electromagnetic and hadronic cal...
International audienceA highly granular electromagnetic calorimeter with scintillator strip readout ...
International audienceA highly granular electromagnetic calorimeter with scintillator strip readout ...
International audienceA highly granular electromagnetic calorimeter with scintillator strip readout ...
International audienceA highly granular electromagnetic calorimeter with scintillator strip readout ...
International audienceA highly granular electromagnetic calorimeter with scintillator strip readout ...
A highly granular electromagnetic calorimeter with scintillator strip readout is being developed for...
A highly granular electromagnetic calorimeter with scintillator strip readout is being developed for...
A highly granular electromagnetic calorimeter with scintillator strip readout is being developed for...
A highly granular electromagnetic calorimeter with scintillator strip readout is being developed for...
A highly granular electromagnetic calorimeter with scintillator strip readout is being developed for...
The CALICE collaboration is studying the design of high performance electromagnetic and hadronic cal...
The CALICE collaboration is studying the design of high performance electromagnetic and hadronic cal...
The CALICE collaboration is studying the design of high performance electromagnetic and hadronic cal...
The CALICE collaboration is studying the design of high performance electromagnetic and hadronic cal...
The CALICE collaboration is studying the design of high performance electromagnetic and hadronic cal...
International audienceA highly granular electromagnetic calorimeter with scintillator strip readout ...
International audienceA highly granular electromagnetic calorimeter with scintillator strip readout ...
International audienceA highly granular electromagnetic calorimeter with scintillator strip readout ...
International audienceA highly granular electromagnetic calorimeter with scintillator strip readout ...
International audienceA highly granular electromagnetic calorimeter with scintillator strip readout ...
A highly granular electromagnetic calorimeter with scintillator strip readout is being developed for...
A highly granular electromagnetic calorimeter with scintillator strip readout is being developed for...
A highly granular electromagnetic calorimeter with scintillator strip readout is being developed for...
A highly granular electromagnetic calorimeter with scintillator strip readout is being developed for...
A highly granular electromagnetic calorimeter with scintillator strip readout is being developed for...
The CALICE collaboration is studying the design of high performance electromagnetic and hadronic cal...
The CALICE collaboration is studying the design of high performance electromagnetic and hadronic cal...
The CALICE collaboration is studying the design of high performance electromagnetic and hadronic cal...
The CALICE collaboration is studying the design of high performance electromagnetic and hadronic cal...
The CALICE collaboration is studying the design of high performance electromagnetic and hadronic cal...