Related Experiment Video
Updated: Jan 27, 2026

Structure of HIV-1 Capsid Assemblies by Cryo-electron Microscopy and Iterative Helical Real-space Reconstruction
Published on: August 9, 2011
The space-time structure of hadronization in the Lund model
Silvia Ferreres-Solé1,2, Torbjörn Sjöstrand2
11Present Address: NIKHEF, Science Park 105, 1098 XG Amsterdam, The Netherlands.
High-density hadron production in particle collisions, described by the Lund string model, explains collective behavior in high-energy events. This new framework, implemented in the Pythia event generator, advances particle physics modeling.
Area of Science:
- High Energy Physics
- Quantum Chromodynamics (QCD)
- Particle Phenomenology
Background:
- The Lund string model traditionally describes particle fragmentation using an energy-momentum picture.
- Extending this to complex systems and incorporating a space-time picture has been challenging.
- Previous models primarily focused on the energy-momentum aspects of hadronization.
Purpose of the Study:
- To develop and implement a space-time picture of hadronization within the Lund string model.
- To investigate hadron production density in various complex systems, including LHC events.
- To provide a framework for understanding collective behavior in high-multiplicity collisions.
Main Methods:
- Development of the space-time picture for open/closed multiparton topologies, junction systems, and massive quarks.
- Integration of the new framework into the Pythia event generator.
- Quantification of hadron production density under diverse conditions using toy and LHC event simulations.
Main Results:
- The study successfully elaborates the space-time picture of fragmentation for complex systems.
- Calculations reveal potentially high densities of hadron production in simulated events.
- Results are validated using both simplified toy systems and realistic Large Hadron Collider (LHC) event data.
Conclusions:
- The high hadron production density observed motivates the collective behavior seen in high-multiplicity proton-proton (pp) collisions.
- The developed space-time framework offers a significant advancement for particle physics event generators like Pythia.
- This provides a foundation for future model developments, including aspects like hadronic rescattering.
Related Concept Videos
Space-Time Curvature and the General Theory of Relativity
This has been verified in many experiments. However, space and time are no longer absolute. Two observers moving relative to one another do not agree on the length of objects or the passage of time. The mechanics of objects based on Newton's laws of...
State Space Representation
Consider an RLC circuit, a...
Space Trusses
At the core of a space truss lies the fundamental unit known as the tetrahedron. This structure is composed of six members that form a three-dimensional shape...
Transfer Function to State Space
In an RLC...
State Space to Transfer Function
The transformation process begins with the state-space representation, characterized by the state equation and the output equation. These equations are typically represented as:
Space Trusses: Problem Solving
Consider a tripod consisting of a tetrahedral space truss with a ball-and-socket joint at C. Suppose the height and lengths of the horizontal and vertical...

