We present a relativistic three-body equation to study correlations in a medium of finite temperatures and densities. This equation is derived within a systematic Dyson equation approach and includes the dominant medium effects due to Pauli blocking and self energy corrections. Relativity is implemented utilizing the light front form. The equation is solved for a zero-range force for parameters close to the confinement-deconfinement transition of QCD. We present correlations between two- and three-particle binding energies and calculate the three-body Mott transition
The understanding of matter at extreme temperatures or densities is of great importance since it is ...
Improving the Bose–Einstein condensate model of dark matter through the repulsive three-particle int...
We study the nature of strongly-interacting fermion matter by employing functional Renormalization G...
We present a relativistic three-body equation to investigate the properties of nucleons in hot and d...
We address the issue of three-quark clusters in a medium of finite temperatures and densities. We us...
Light-front quantization to many-particle systems of finite temperature and density provides a novel...
PTHStrongly interacting matter such as nuclear or quark matter leads to few-body bound states and co...
We present a model for quark matter with a density dependent quark-quark (confining) potential, whic...
We are concerned with few-particle correlations in a fermionic system at finite temperature and dens...
We present recent results on thermodynamics of QCD with almost physical light quark masses and a phy...
We investigate the properties of quark matter at finite density and temperature using the nonlinear ...
We evaluate equal time point to point spatial correlation functions of mesonic currents at finite te...
We present recent results on thermodynamics of QCD with almost physical light quark masses and a phy...
We present a three–dimensional model for quark matter with a density dependent quark–quark (confinin...
We describe the application of Dyson-Schwinger equations to the calculation of hadron observables. T...
The understanding of matter at extreme temperatures or densities is of great importance since it is ...
Improving the Bose–Einstein condensate model of dark matter through the repulsive three-particle int...
We study the nature of strongly-interacting fermion matter by employing functional Renormalization G...
We present a relativistic three-body equation to investigate the properties of nucleons in hot and d...
We address the issue of three-quark clusters in a medium of finite temperatures and densities. We us...
Light-front quantization to many-particle systems of finite temperature and density provides a novel...
PTHStrongly interacting matter such as nuclear or quark matter leads to few-body bound states and co...
We present a model for quark matter with a density dependent quark-quark (confining) potential, whic...
We are concerned with few-particle correlations in a fermionic system at finite temperature and dens...
We present recent results on thermodynamics of QCD with almost physical light quark masses and a phy...
We investigate the properties of quark matter at finite density and temperature using the nonlinear ...
We evaluate equal time point to point spatial correlation functions of mesonic currents at finite te...
We present recent results on thermodynamics of QCD with almost physical light quark masses and a phy...
We present a three–dimensional model for quark matter with a density dependent quark–quark (confinin...
We describe the application of Dyson-Schwinger equations to the calculation of hadron observables. T...
The understanding of matter at extreme temperatures or densities is of great importance since it is ...
Improving the Bose–Einstein condensate model of dark matter through the repulsive three-particle int...
We study the nature of strongly-interacting fermion matter by employing functional Renormalization G...