Ground state properties and level statistics of the Dicke model for a finite number of atoms are investigated based on a progressive diagonalization scheme (PDS). Particle number statistics, the entanglement measure and the Shannon information entropy at the resonance point in cases with a finite number of atoms as functions of the coupling parameter are calculated. It is shown that the entanglement measure defined in terms of the normalized von Neumann entropy of the reduced density matrix of the atoms reaches its maximum value at the critical point of the quantum phase transition where the system is most chaotic. Noticeable change in the Shannon information entropy near or at the critical point of the quantum phase transition is also obse...
We study nonequilibrium processes in an isolated quantum system-the Dicke model-focusing on the role...
Abstract. We study the entanglement dynamics in the externally-driven single-mode Dicke model in the...
We introduce a measure called reduced entropy of sublattice to quantify entanglement in spin, electr...
Ground state properties and level statistics of the Dicke model for a finite number of atoms are inv...
Ground state properties and level statistics of the Dicke model for a finite number of atoms are inv...
We present the qualitative differences in the phase transitions of the mono-mode Dicke model in its ...
In the thesis we investigate and classify critical phenomena in the extended Dicke model (EDM) which...
We study dynamical properties of quantum entanglement in the Dicke model with and without the rotati...
We analyse the relation between local two-atom and total multi-atom entanglements in the Dicke syste...
Quantum phase transitions are often embodied by the critical behavior of purely quantum quantities s...
In this contribution, the critical behavior of excited state quantum phase transitions (ESQPT's) and...
Abstract. We calculate numerically the fidelity and its susceptibility for the ground state of the D...
We show how various mathematical formalisms, specifically the catastrophe formalism and group theory...
We present a detailed analysis of the connection between chaos and the onset of thermalization in th...
doi:10.1088/1367-2630/16/6/063039 The single-mode Dicke model is well known to undergo a quantum pha...
We study nonequilibrium processes in an isolated quantum system-the Dicke model-focusing on the role...
Abstract. We study the entanglement dynamics in the externally-driven single-mode Dicke model in the...
We introduce a measure called reduced entropy of sublattice to quantify entanglement in spin, electr...
Ground state properties and level statistics of the Dicke model for a finite number of atoms are inv...
Ground state properties and level statistics of the Dicke model for a finite number of atoms are inv...
We present the qualitative differences in the phase transitions of the mono-mode Dicke model in its ...
In the thesis we investigate and classify critical phenomena in the extended Dicke model (EDM) which...
We study dynamical properties of quantum entanglement in the Dicke model with and without the rotati...
We analyse the relation between local two-atom and total multi-atom entanglements in the Dicke syste...
Quantum phase transitions are often embodied by the critical behavior of purely quantum quantities s...
In this contribution, the critical behavior of excited state quantum phase transitions (ESQPT's) and...
Abstract. We calculate numerically the fidelity and its susceptibility for the ground state of the D...
We show how various mathematical formalisms, specifically the catastrophe formalism and group theory...
We present a detailed analysis of the connection between chaos and the onset of thermalization in th...
doi:10.1088/1367-2630/16/6/063039 The single-mode Dicke model is well known to undergo a quantum pha...
We study nonequilibrium processes in an isolated quantum system-the Dicke model-focusing on the role...
Abstract. We study the entanglement dynamics in the externally-driven single-mode Dicke model in the...
We introduce a measure called reduced entropy of sublattice to quantify entanglement in spin, electr...