In an ultra relativistic collision between two heavy nuclei the temperature of the matter in the overlap region gets so large that a phase transition occurs between normal hadronic matter and a deconfined strongly coupled medium that we call the quark gluon plasma. In my thesis, this state of matter is studied using data from the ALICE detector at the LHC, using photons as the main experimental probe. My work pushed the photon reconstruction capabilities of the detector to its limits, measuring neutral mesons and direct photons with increased momentum range and precision. This allows us to learn more about particle production mechanisms even in the non-perturbative regime across all system sizes. Furthermore, there is a hint of a direct pho...
The LHC provided pp collisions in the energy range $\sqrt{s}=0.9$ to $13$ TeV , p-Pb collisions at $...
The measurements of photons and neutral mesons, such as ϕ(0) and ϕ, allow to explore the QCD matter ...
In the Standard Model of particle physics, elementary constituents of matter identified to date are ...
The ALICE experiment at LHC is dedicated to studies of the Quark– Gluon Plasma (QGP) state, which is...
The production of light neutral mesons in AA collisions probes the physics of the Quark-Gluon Plasma...
The Quark-Gluon Plasma (QGP) is a strongly interacting matter with high temperature and energy densi...
In the Standard Model of particle physics, elementary constituents of matter identified to date are ...
The goal of the ALICE experiment at CERN is to study strongly interacting matter under extreme condi...
Ultra-relativistic collisions of protons and heavy-ions reveal the structure of matter at the smalle...
Light pseudo-scalar neutral mesons have been studied in e$^{+}$e$^{−}$ , hadron-hadron, hadron-nucle...
The production of light neutral mesons in different collision systems is interesting for a variety o...
One of the key signatures of the Quark Gluon Plasma (QGP) is the modification of hadron and direct p...
We present an overview of the photon analysis in pp and Pb-Pb collisions with data taken by the ALIC...
The Quark-Gluon Plasma~(QGP) is a strongly interacting matter with high temperature and energy densi...
The LHC provided pp collisions in the energy range $\sqrt{s}=0.9$ to $13$ TeV , p-Pb collisions at $...
The measurements of photons and neutral mesons, such as ϕ(0) and ϕ, allow to explore the QCD matter ...
In the Standard Model of particle physics, elementary constituents of matter identified to date are ...
The ALICE experiment at LHC is dedicated to studies of the Quark– Gluon Plasma (QGP) state, which is...
The production of light neutral mesons in AA collisions probes the physics of the Quark-Gluon Plasma...
The Quark-Gluon Plasma (QGP) is a strongly interacting matter with high temperature and energy densi...
In the Standard Model of particle physics, elementary constituents of matter identified to date are ...
The goal of the ALICE experiment at CERN is to study strongly interacting matter under extreme condi...
Ultra-relativistic collisions of protons and heavy-ions reveal the structure of matter at the smalle...
Light pseudo-scalar neutral mesons have been studied in e$^{+}$e$^{−}$ , hadron-hadron, hadron-nucle...
The production of light neutral mesons in different collision systems is interesting for a variety o...
One of the key signatures of the Quark Gluon Plasma (QGP) is the modification of hadron and direct p...
We present an overview of the photon analysis in pp and Pb-Pb collisions with data taken by the ALIC...
The Quark-Gluon Plasma~(QGP) is a strongly interacting matter with high temperature and energy densi...
The LHC provided pp collisions in the energy range $\sqrt{s}=0.9$ to $13$ TeV , p-Pb collisions at $...
The measurements of photons and neutral mesons, such as ϕ(0) and ϕ, allow to explore the QCD matter ...
In the Standard Model of particle physics, elementary constituents of matter identified to date are ...