activity
20092013
most citedHadronic energy resolution of a highly granular scintillator-steel hadron calorimeter using software compensation techniques

58 citations · 68 across the 4 of their papers we have counts for

collaborators

9 papers

physics.ins-det2013

Validation of GEANT4 Monte Carlo Models with a Highly Granular Scintillator-Steel Hadron Calorimeter

C. Adloff, J. Blaha, J. -J. Blaising +169

Calorimeters with a high granularity are a fundamental requirement of the Particle Flow paradigm. This paper focuses on the prototype of a hadron calorimeter with analog readout, c…

physics.ins-det2012★ 58 cited

Hadronic energy resolution of a highly granular scintillator-steel hadron calorimeter using software compensation techniques

CALICE Collaboration, C. Adloff, J. Blaha +163

The energy resolution of a highly granular 1 m3 analogue scintillator-steel hadronic calorimeter is studied using charged pions with energies from 10 GeV to 80 GeV at the CERN SPS.…

physics.ins-det2012★ 4 cited

Recent results of Micromegas sDHCAL with a new readout chip

C. Adloff, J. Blaha, J. -J. Blaising +13

Calorimetry at future linear colliders could be based on a particle flow approach where granularity is the key to high jet energy resolution. Among different technologies, Micromeg…

physics.ins-det2011

Micromegas for imaging hadronic calorimetry

C. Adloff, J. Blaha, S. Cap +12

The recent progress in R&D of the Micromegas detectors for hadronic calorimetry including new engineering-technical solutions, electronics development, and accompanying simulation…

physics.ins-det2010

Electromagnetic response of a highly granular hadronic calorimeter

C. Adloff, J. Blaha, J. -J. Blaising +164

The CALICE collaboration is studying the design of high performance electromagnetic and hadronic calorimeters for future International Linear Collider detectors. For the hadronic c…

physics.ins-det2010

Status of the Micromegas semi-DHCAL

C. Adloff, J. Blaha, J. -J. Blaising +8

The activities towards the fabrication and test of a 1 m3 semi-digital hadronic calorime- ter are reviewed. The prototype sampling planes would consist of 1 m2 Micromegas chambers…