The Interacting Gluon Model (IGM) is a tool designed to study energy flow, especially stopping and leading particle spectra, in high energy hadronic collisions. In this model, valence quarks fly through and the gluon clouds of the hadrons interact strongly both in the soft and in the semihard regime. Developing this picture we arrive at a simple description of energy loss, given in terms of few parameters, which accounts for a wide variety of experimental data. This text is a survey of our main results and predictions
We argue in this paper the following. (i) A large part of what is observed in high-energy hadron rea...
In this paper we continue the development of a model for strong interactions at high energy, based o...
Multiparticle production in lepton and hadron processes is studied by means of the Gluon Dominance M...
The Interacting Gluon Model (IGM) is a tool designed to study energy flow, especially stopping and l...
Neste trabalho usamos o Interacting glúon Model (IGM), um modelo que descreve bem o fluxo de energia...
In this work we use the IGM, a model that describes well the energy flux in hadronic collisions, to ...
We apply to total cross-sections our model for soft gluon resummation in the infrared region. The mo...
We present a Monte-Carlo simulation of energy deposition process in relativistic heavy-ion collision...
International audienceUnderstanding the energy loss of strongly interacting particles is of utmost i...
A new model (a la Glauber) for hadron–nuclei interaction at intermediate energy (IE) is proposed. We...
This dissertation discusses my investigations of energy loss of high-momentum quarks and gluons in t...
Quantum Chromodynamics (QCD) is the theory of the strong interaction, one of the fundamental forces ...
Study of multi-particle production has longer than the semi-centennial history. As it is known, with...
This study is following a simple model for predicting particle energy-loss due to medium interaction...
We discuss the leading particle spectra and diffractive mass spectra from the novel point of view, n...
We argue in this paper the following. (i) A large part of what is observed in high-energy hadron rea...
In this paper we continue the development of a model for strong interactions at high energy, based o...
Multiparticle production in lepton and hadron processes is studied by means of the Gluon Dominance M...
The Interacting Gluon Model (IGM) is a tool designed to study energy flow, especially stopping and l...
Neste trabalho usamos o Interacting glúon Model (IGM), um modelo que descreve bem o fluxo de energia...
In this work we use the IGM, a model that describes well the energy flux in hadronic collisions, to ...
We apply to total cross-sections our model for soft gluon resummation in the infrared region. The mo...
We present a Monte-Carlo simulation of energy deposition process in relativistic heavy-ion collision...
International audienceUnderstanding the energy loss of strongly interacting particles is of utmost i...
A new model (a la Glauber) for hadron–nuclei interaction at intermediate energy (IE) is proposed. We...
This dissertation discusses my investigations of energy loss of high-momentum quarks and gluons in t...
Quantum Chromodynamics (QCD) is the theory of the strong interaction, one of the fundamental forces ...
Study of multi-particle production has longer than the semi-centennial history. As it is known, with...
This study is following a simple model for predicting particle energy-loss due to medium interaction...
We discuss the leading particle spectra and diffractive mass spectra from the novel point of view, n...
We argue in this paper the following. (i) A large part of what is observed in high-energy hadron rea...
In this paper we continue the development of a model for strong interactions at high energy, based o...
Multiparticle production in lepton and hadron processes is studied by means of the Gluon Dominance M...