Finite size of hadrons and Bose-Einstein correlations
arXiv:1309.6169 · doi:10.1016/j.physletb.2013.10.018
Abstract
It is observed that the finite size of hadrons produced in high energy collisions implies that their positions are correlated, since the probability of finding two hadrons on top of each other is highly reduced. It is then shown that this effect can naturally explain the values of the correlation function below one, observed at LEP and LHC for pairs of identical pions.
Latex, 8 pages, one figure
References in corpus (4)
- Femtoscopy of pp collisions at =0.9 and 7 TeV at the LHC with two-pion Bose-Einstein correlations
- Measurement of Bose-Einstein Correlations in pp Collisions at sqrt(s)=0.9 and 7 TeV
- Test of the \boldmath{}-Model of Bose-Einstein Correlations and Reconstruction of the Source Function in Hadronic Z-boson Decay at LEP
- Parametrization of Bose-Einstein Correlations and Reconstruction of the Space-Time Evolution of Pion Production in e+e- Annihilation
Cited by in corpus (6)
- Study of Bose-Einstein correlations in pp, pPb, and PbPb collisions at 0.9-7 TeV
- Femtoscopy of stopped protons
- Spacetime Colour Reconnection in Herwig 7
- Finite size of hadrons and Bose-Einstein Correlations
- Finite size of hardons and HBT interferometry for hydrodynamic sources
- The tau-model of Bose-Einstein Correlations: Some recent results