Geant-4 status

18/1/2000


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Table of Contents

Geant-4 status

Contents

Geant4 Capabilities

Current status

The next release: Geant4 1.0

Geant4 1.0 (cont.)

Plans after Geant4 1.0 release

Proposal for regular G4 tags

Geant4 1.0: New/Improved Physics

Isotope Production

Improved Physics: EM

In the near future (1-2 months)

In Context: Theoretical Hadronic Processes

Pre-Compound Model + Evaporation Phase

Cascade

String models

Future additions

Other Hadronics

Cuts: production & user

User Support Model

User Support Model (cont.)

Experiences with Geant4

Some of the experiences

Geometry performance

Geometry functionality

Observations

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Geant4 Context

Geant4 kernel: run/event

Geant4 kernel: tracking

Geant4 kernel: other

Particles in geant4.0.1

Particles and Tracks: Plans

Electro-Magnetic physics

Electromagnetic processes

Cuts: production & user

EM Processes: recent developments

Secondaries Produced or Not

Hadronic processes

Photon evaporation

Parameterization/Fast Simulation

Other processes

Examples and Documentation

Visualization

Migration to STL

Migration to ISO C++

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Geometry developments in last year

Geometry and Transportation

Geometry: In progress

BREPS/ STEP: Short/medium term plans

Object Persistency: Hits & other

Persistency Plans

Persistency Summary

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Standard Radiation Environment Monitor (SREM)

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Radioactive Decay Processes and Data

Radioactive decay: Functionality

Radioactive decay: Current Status

New GEANT4 Collaboration

Geant4 this year

Geant4 plans

Experiences with Geant4

Summary

Geant4 prerequisites

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Hadronic physics

Hadronics: the Plan

Hadronics: implementation

Hadronic physics processes

GEANT4 Physics Processes Design

Units, data libraries

High Energy K,pi on Al, Au

Induced fission U235, 10 MeV neutrons

Capture by U238 of neutrons

Author: John Apostolakis

Email: John.Apostolakis@cern.ch

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