The behavior of QCD at high baryon density and low temperature is crucial to understanding the properties of neutron stars and gravitational waves emitted during their mergers. In this paper we study small systems of baryons in periodic boundary conditions to probe the properties of QCD at high baryon density. By comparing calculations based on nucleon degrees of freedom to simple quark models we show that specific features of the nuclear spectrum, including shell structure and nucleon pairing, emerge if nucleons are the primary degrees of freedom. Very small systems should also be amenable to studies in lattice QCD, unlike larger systems where the fermion sign problem is much more severe. Through comparisons of lattice QCD and nuclear calc...
A three-dimensional effective lattice theory of Polyakov loops is derived from QCD by expansions in ...
In the limit of a large number of colors, quantum chromodynamics is thought to reduce to a theory in...
In this thesis we investigate the phase structure of dense quark matter, the structure and stability...
Abstract Neutron stars are cosmic laboratories to study dense matter in quantum chromodynamics (QCD)...
A new density dependent effective baryon-baryon interaction has been recently derived from the quark...
We discuss the 3-window modeling of cold, dense QCD matter equations of state at density relevant to...
We consider the difficulties of finite density QCD from the canonical formalism. We present results ...
The properties of matter at finite baryon densities play an important role for the astrophysics of c...
We report on recent work on the equation of state and pairing gap of neutron matter and cold atomic ...
Important progress in understanding the behavior of hadronic matter at high density has been achieve...
The underlying theme of this thesis is an investigation of the equation of state of strongly interac...
Ultracold atomic gases and low-density neutron matter are unique in that they exhibit pairing gaps c...
In this review article, we argue that our current understanding of the thermodynamic properties of c...
Kaczmarek O. Lattice QCD results on soft and hard probes of strongly interacting matter. Nuclear Ph...
A thermodynamic model of the quark-gluon plasma using quasiparticle degrees of freedom based on the ...
A three-dimensional effective lattice theory of Polyakov loops is derived from QCD by expansions in ...
In the limit of a large number of colors, quantum chromodynamics is thought to reduce to a theory in...
In this thesis we investigate the phase structure of dense quark matter, the structure and stability...
Abstract Neutron stars are cosmic laboratories to study dense matter in quantum chromodynamics (QCD)...
A new density dependent effective baryon-baryon interaction has been recently derived from the quark...
We discuss the 3-window modeling of cold, dense QCD matter equations of state at density relevant to...
We consider the difficulties of finite density QCD from the canonical formalism. We present results ...
The properties of matter at finite baryon densities play an important role for the astrophysics of c...
We report on recent work on the equation of state and pairing gap of neutron matter and cold atomic ...
Important progress in understanding the behavior of hadronic matter at high density has been achieve...
The underlying theme of this thesis is an investigation of the equation of state of strongly interac...
Ultracold atomic gases and low-density neutron matter are unique in that they exhibit pairing gaps c...
In this review article, we argue that our current understanding of the thermodynamic properties of c...
Kaczmarek O. Lattice QCD results on soft and hard probes of strongly interacting matter. Nuclear Ph...
A thermodynamic model of the quark-gluon plasma using quasiparticle degrees of freedom based on the ...
A three-dimensional effective lattice theory of Polyakov loops is derived from QCD by expansions in ...
In the limit of a large number of colors, quantum chromodynamics is thought to reduce to a theory in...
In this thesis we investigate the phase structure of dense quark matter, the structure and stability...