We investigate the time evolution of the second-order R\'enyi entropy (RE) for bosons in a one-dimensional optical lattice following a sudden quench of the hopping amplitude $J$. Specifically, we examine systems that are quenched into the strongly correlated Mott-insulating (MI) regime with $J/U\ll 1$ ($U$ denotes the strength of the on-site repulsive interaction) from the MI limit with $J=0$. In this regime, the low-energy excited states can be effectively described by fermionic quasiparticles known as doublons and holons. They are excited in entangled pairs through the quench dynamics. By developing an effective theory, we derive a direct relation between the RE and correlation functions associated with doublons and holons. This relation ...
We compute the pseudo entropy in two-dimensional holographic and free Dirac fermion CFTs for excited...
We investigate the time evolution of the entanglement entropy of coupled single-mode Bose-Einstein c...
A great deal of many-body localization (MBL) has been learnt from the one-dimensional (1D) spin or f...
Following a sudden change of interactions in an integrable system of one-dimensional fermions, we an...
The time evolution of the entanglement entropy in non-equilibrium quantum systems provides crucial i...
We extend the semiclassical picture for the spreading of entanglement and correlations to quantum qu...
The growth of Renyi entropies after the injection of energy into a correlated system provides a wind...
We study the dynamical properties of a strongly scrambling quantum circuit involving a projective me...
The study of the entanglement dynamics plays a fundamental role in understanding the behaviour of ma...
In this paper, we consider the dynamics of R\'enyi negativities after a quantum quench in the free-b...
A typical working condition in the study of quantum quenches is that the initial state produces a di...
The study of the moments of the partially transposed density matrix provides a new and effective way...
We investigate the dynamical evolution of entanglement entropy in a holographic superconductor model...
The study of the dynamics of entanglement measures after a quench has become a very active area of r...
The problem of how complex quantum systems eventually come to rest lies at the heart of statistical ...
We compute the pseudo entropy in two-dimensional holographic and free Dirac fermion CFTs for excited...
We investigate the time evolution of the entanglement entropy of coupled single-mode Bose-Einstein c...
A great deal of many-body localization (MBL) has been learnt from the one-dimensional (1D) spin or f...
Following a sudden change of interactions in an integrable system of one-dimensional fermions, we an...
The time evolution of the entanglement entropy in non-equilibrium quantum systems provides crucial i...
We extend the semiclassical picture for the spreading of entanglement and correlations to quantum qu...
The growth of Renyi entropies after the injection of energy into a correlated system provides a wind...
We study the dynamical properties of a strongly scrambling quantum circuit involving a projective me...
The study of the entanglement dynamics plays a fundamental role in understanding the behaviour of ma...
In this paper, we consider the dynamics of R\'enyi negativities after a quantum quench in the free-b...
A typical working condition in the study of quantum quenches is that the initial state produces a di...
The study of the moments of the partially transposed density matrix provides a new and effective way...
We investigate the dynamical evolution of entanglement entropy in a holographic superconductor model...
The study of the dynamics of entanglement measures after a quench has become a very active area of r...
The problem of how complex quantum systems eventually come to rest lies at the heart of statistical ...
We compute the pseudo entropy in two-dimensional holographic and free Dirac fermion CFTs for excited...
We investigate the time evolution of the entanglement entropy of coupled single-mode Bose-Einstein c...
A great deal of many-body localization (MBL) has been learnt from the one-dimensional (1D) spin or f...