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Energia transversal perduda×Calibració de Calorímetres×
CampFísica de partículesFísica de partícules
FamíliaProcess / pipelineProcess / pipeline
Any d'origen19901990
Autor originalNeutrino physics community (post-1960s)Detector physics community
TipusInvisible particle detection methodEnergy measurement framework
Font seminalKhachatryan, V., et al. (CMS Collaboration). (2014). Performance of missing transverse momentum reconstruction in proton-proton collisions at 7 TeV with ATLAS. Journal of High Energy Physics, 2012(07), 167. link ↗Aad, G., et al. (ATLAS Collaboration). (2012). Measurements of Higgs boson production. Physical Review Letters, 108(11), 111803. link ↗
ÀliesMET, missing transverse momentum, invisible energyenergy calibration, detector response, response function
Relacionats33
ResumMissing transverse energy (MET) is a powerful technique used in high-energy physics to infer the presence of invisible particles, primarily neutrinos, that escape a detector without leaving a trace. By measuring the imbalance of transverse momentum in the event, physicists can detect signatures of weakly interacting particles crucial for studying the Standard Model and searching for new physics beyond it.Calorimeter calibration establishes the relationship between the measured energy deposited in a detector and the true energy of incident particles. Precise calibration is essential for physics measurements, Higgs boson properties, and new physics searches at colliders, requiring careful control of systematic uncertainties.
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ScholarGateCompara mètodes: Missing Transverse Energy · Calorimeter Calibration. Recuperat el 2026-06-18 de https://scholargate.app/ca/compare