Cargando…
CMS Full Simulation for Run-3
We report the status of the CMS full simulation for Run 3. During the long shutdown of the LHC a significant update has been introduced to the CMS code for simulation. The CMS geometry description is reviewed. Several important modifications were needed. CMS detector description software is migrated...
Autores principales: | , , , , , , , , , |
---|---|
Lenguaje: | eng |
Publicado: |
2021
|
Materias: | |
Acceso en línea: | http://cds.cern.ch/record/2802582 |
_version_ | 1780972752076800000 |
---|---|
author | Ivantchenko, Vladimir Banerjee, Sunanda Hugo, Gabrielle Lo Meo, Sergio Osborne, Ianna Pedro, Kevin Jerome Piparo, Danilo Sorokin, Dmitry Srimanobhas, Norraphat Vuosalo, Carl Onni Urho |
author_facet | Ivantchenko, Vladimir Banerjee, Sunanda Hugo, Gabrielle Lo Meo, Sergio Osborne, Ianna Pedro, Kevin Jerome Piparo, Danilo Sorokin, Dmitry Srimanobhas, Norraphat Vuosalo, Carl Onni Urho |
author_sort | Ivantchenko, Vladimir |
collection | CERN |
description | We report the status of the CMS full simulation for Run 3. During the long shutdown of the LHC a significant update has been introduced to the CMS code for simulation. The CMS geometry description is reviewed. Several important modifications were needed. CMS detector description software is migrated to the DD4Hep community developed tool. We will report on our experience obtained during the process of this migration. Geant4 10.7 is the CMS choice for Run 3 simulation productions. We will discuss arguments for this choice, the strategy of adaptation of a new Geant4 version, and will report on the physics performance of the CMS simulation. A special Geant4 Physics List configuration FTFP\_BERT\_EMM will be described, which provides a compromise between simulation accuracy and CPU performance. A significant fraction of time for simulation of CMS events is spent on tracking of charged particles in a magnetic field. In the CMS simulation a dynamic choice of Geant4 parameters for tracking in field is implemented. A new method is introduced into simulation of electromagnet ic components of hadronic showers in the electromagnetic calorimeter of CMS. For low-energy electrons and positrons a parametrization of GFlash type is applied. Results of tests of this method will be discussed. In summary, we expect about 8\% speedup of the CMS simulation production for Run 3 compared to the Run 2 simulations. |
id | cern-2802582 |
institution | Organización Europea para la Investigación Nuclear |
language | eng |
publishDate | 2021 |
record_format | invenio |
spelling | cern-28025822022-02-28T19:53:03Zhttp://cds.cern.ch/record/2802582engIvantchenko, VladimirBanerjee, SunandaHugo, GabrielleLo Meo, SergioOsborne, IannaPedro, Kevin JeromePiparo, DaniloSorokin, DmitrySrimanobhas, NorraphatVuosalo, Carl Onni UrhoCMS Full Simulation for Run-3Detectors and Experimental TechniquesWe report the status of the CMS full simulation for Run 3. During the long shutdown of the LHC a significant update has been introduced to the CMS code for simulation. The CMS geometry description is reviewed. Several important modifications were needed. CMS detector description software is migrated to the DD4Hep community developed tool. We will report on our experience obtained during the process of this migration. Geant4 10.7 is the CMS choice for Run 3 simulation productions. We will discuss arguments for this choice, the strategy of adaptation of a new Geant4 version, and will report on the physics performance of the CMS simulation. A special Geant4 Physics List configuration FTFP\_BERT\_EMM will be described, which provides a compromise between simulation accuracy and CPU performance. A significant fraction of time for simulation of CMS events is spent on tracking of charged particles in a magnetic field. In the CMS simulation a dynamic choice of Geant4 parameters for tracking in field is implemented. A new method is introduced into simulation of electromagnet ic components of hadronic showers in the electromagnetic calorimeter of CMS. For low-energy electrons and positrons a parametrization of GFlash type is applied. Results of tests of this method will be discussed. In summary, we expect about 8\% speedup of the CMS simulation production for Run 3 compared to the Run 2 simulations.CMS-NOTE-2022-002CERN-CMS-NOTE-2022-002oai:cds.cern.ch:28025822021-06-09 |
spellingShingle | Detectors and Experimental Techniques Ivantchenko, Vladimir Banerjee, Sunanda Hugo, Gabrielle Lo Meo, Sergio Osborne, Ianna Pedro, Kevin Jerome Piparo, Danilo Sorokin, Dmitry Srimanobhas, Norraphat Vuosalo, Carl Onni Urho CMS Full Simulation for Run-3 |
title | CMS Full Simulation for Run-3 |
title_full | CMS Full Simulation for Run-3 |
title_fullStr | CMS Full Simulation for Run-3 |
title_full_unstemmed | CMS Full Simulation for Run-3 |
title_short | CMS Full Simulation for Run-3 |
title_sort | cms full simulation for run-3 |
topic | Detectors and Experimental Techniques |
url | http://cds.cern.ch/record/2802582 |
work_keys_str_mv | AT ivantchenkovladimir cmsfullsimulationforrun3 AT banerjeesunanda cmsfullsimulationforrun3 AT hugogabrielle cmsfullsimulationforrun3 AT lomeosergio cmsfullsimulationforrun3 AT osborneianna cmsfullsimulationforrun3 AT pedrokevinjerome cmsfullsimulationforrun3 AT piparodanilo cmsfullsimulationforrun3 AT sorokindmitry cmsfullsimulationforrun3 AT srimanobhasnorraphat cmsfullsimulationforrun3 AT vuosalocarlonniurho cmsfullsimulationforrun3 |