International audienceThe Particle Flow Algorithms adopted for future e+e−e+e− colliders detectors and phase-II CMS upgrade require very high granularity calorimeters to deconvolve the individual contributions of particles in jets. This is especially true for electromagnetic calorimeters (ECAL). For a realistic large detector many technological requirements have to be fulfilled: modularity for industrialization; compact integration of an embedded very front-end electronics featuring large dynamics, low-power and self-triggering; mechanical structure and cooling systems with minimal dead zones. The technological prototype of the silicon-tungsten (SiW) ECAL presented here should achieve all this. 10 layers are produced and tested in beam, whi...
The next generation of collider detectors will make full use of Particle Flow Algorithms, requiring ...
International audienceHigh precision physics at future colliders requires unprecedented highly granu...
Calorimeters with silicon detectors have many unique features and are proposed for several world-lea...
International audienceThe Particle Flow Algorithms adopted for future e+e−e+e− colliders detectors a...
International audienceParticle Flow Algorithm (PFA) and highly granular calorimeters provide current...
International audienceThe excellent jet energy resolution required for precise physics measurements ...
International audienceHighly granular calorimeters and particle flow algorithms are essential tools ...
AbstractThe excellent jet energy resolution required for precise physics measurements at ILC is achi...
The “long slab” is a new prototype for the SiW-Ecal, a silicon tungsten electromagnetic calorimeter ...
We summarize recent R&D progress for a silicon-tungsten electromagnetic calorimeter (ECal) with ...
International audienceThis article presents an overview on the status and perspectives of a highly g...
International audienceA highly granular silicon-tungsten electromagnetic calorimeter (SiW-ECAL) is t...
The International Large Detector (ILD) is a proposed detector for the International Linear Collider ...
The long slab is a new prototype for the SiW-Ecal, a silicon tungsten electromagnetic calorimeter fo...
The next generation of collider detectors will make full use of Particle Flow Algorithms, requiring ...
International audienceHigh precision physics at future colliders requires unprecedented highly granu...
Calorimeters with silicon detectors have many unique features and are proposed for several world-lea...
International audienceThe Particle Flow Algorithms adopted for future e+e−e+e− colliders detectors a...
International audienceParticle Flow Algorithm (PFA) and highly granular calorimeters provide current...
International audienceThe excellent jet energy resolution required for precise physics measurements ...
International audienceHighly granular calorimeters and particle flow algorithms are essential tools ...
AbstractThe excellent jet energy resolution required for precise physics measurements at ILC is achi...
The “long slab” is a new prototype for the SiW-Ecal, a silicon tungsten electromagnetic calorimeter ...
We summarize recent R&D progress for a silicon-tungsten electromagnetic calorimeter (ECal) with ...
International audienceThis article presents an overview on the status and perspectives of a highly g...
International audienceA highly granular silicon-tungsten electromagnetic calorimeter (SiW-ECAL) is t...
The International Large Detector (ILD) is a proposed detector for the International Linear Collider ...
The long slab is a new prototype for the SiW-Ecal, a silicon tungsten electromagnetic calorimeter fo...
The next generation of collider detectors will make full use of Particle Flow Algorithms, requiring ...
International audienceHigh precision physics at future colliders requires unprecedented highly granu...
Calorimeters with silicon detectors have many unique features and are proposed for several world-lea...