We present a general condition on quark fragmentation which gives a hadron distribution satisfying Lorentz invariance and causality. The hadronization can be described as an iterative cascade process, symmetric with respect to iteration from the quark and the antiquark ends. The possible particle distributions are strongly restricted, with few free parameters related to the total multiplicity and corelations in rapidity. These parameters can be given an appealing interpretation in terms of the expected area and perimeter dependence of Wilson loop integrals
Different hadronization effects in high energy interactions are investigated. The frame-work is the ...
Published 11 October 2017We study the dihadron fragmentation functions (DiFF) of longitudinally pola...
Recent studies of the fragmentation functions using the Nambu–Jona-Lasinio (NJL)-Jet model have been...
We derive a factorization theorem that describes an energetic hadron h fragmenting from a jet produc...
We propose the characterization of fragmentation functions by the energy fraction $\tilde{x}$ a hadr...
Within the framework of the constituent quark model, it isshown that the single hadron fragmentation...
A semiclassical model is presented for the way the energy of a fast quark is transformed into observ...
We investigate the properties and structure of the recently discussed “fully inclusive jet correlato...
Under the assumption of hard scattering, multiplicity analysis of quark-diquark jets is made in a mo...
A semiclassical model is presented for the way the energy of a fast quark is transformed into observ...
In order to describe the hadronization of polarized quarks, we discuss an extension of the quark-jet...
Different hadronization effects in high energy interactions are investigated. The frame-work is the ...
A model is analyzed that provides a parametrization of the properties of the jet of mesons generated...
A description of fragmentation functions which satisfy the momentum and isospin sum rules is present...
Abstract. Recent studies of the fragmentation functions using the Nambu–Jona-Lasinio (NJL)- Jet mode...
Different hadronization effects in high energy interactions are investigated. The frame-work is the ...
Published 11 October 2017We study the dihadron fragmentation functions (DiFF) of longitudinally pola...
Recent studies of the fragmentation functions using the Nambu–Jona-Lasinio (NJL)-Jet model have been...
We derive a factorization theorem that describes an energetic hadron h fragmenting from a jet produc...
We propose the characterization of fragmentation functions by the energy fraction $\tilde{x}$ a hadr...
Within the framework of the constituent quark model, it isshown that the single hadron fragmentation...
A semiclassical model is presented for the way the energy of a fast quark is transformed into observ...
We investigate the properties and structure of the recently discussed “fully inclusive jet correlato...
Under the assumption of hard scattering, multiplicity analysis of quark-diquark jets is made in a mo...
A semiclassical model is presented for the way the energy of a fast quark is transformed into observ...
In order to describe the hadronization of polarized quarks, we discuss an extension of the quark-jet...
Different hadronization effects in high energy interactions are investigated. The frame-work is the ...
A model is analyzed that provides a parametrization of the properties of the jet of mesons generated...
A description of fragmentation functions which satisfy the momentum and isospin sum rules is present...
Abstract. Recent studies of the fragmentation functions using the Nambu–Jona-Lasinio (NJL)- Jet mode...
Different hadronization effects in high energy interactions are investigated. The frame-work is the ...
Published 11 October 2017We study the dihadron fragmentation functions (DiFF) of longitudinally pola...
Recent studies of the fragmentation functions using the Nambu–Jona-Lasinio (NJL)-Jet model have been...