In quantum electrodynamics with charged fermions, a background electric field is the source of the chiral anomaly which creates a chirally imbalanced state of fermions. This chiral state is realized through the production of entangled pairs of right-moving fermions and left-moving antifermions (or vice versa, depending on the orientation of the electric field). Here we show that the statistical Gibbs entropy associated with these pairs is equal to the entropy of entanglement between the right-moving particles and left-moving antiparticles. We then derive an asymptotic expansion for the entanglement entropy in terms of the cumulants of the multiplicity distribution of produced particles and explain how to re-sum this asymptotic expansion. Fi...
We study the proposal by Kharzeev-Levin to determine entanglement entropy in Deep Inelastic Scatteri...
Despite its ubiquity in quantum computation and quantum information, a universally applicable defini...
An algebraic approach to the study of entanglement entropy of quantum systems is reviewed. Starting ...
The Schwinger process in strong electric fields creates particles and antiparticles that are entangl...
The study of the entanglement dynamics plays a fundamental role in understanding the behaviour of ma...
Following up on a recent analysis of two cold atoms in a time-dependent harmonic trap in one dimensi...
We derive the entanglement entropy of chiral fermions on the circle at arbitrary temperature. The sp...
We explore the relation between entanglement entropy of quantum many-body systems and the distributi...
We compute the pseudo entropy in two-dimensional holographic and free Dirac fermion CFTs for excited...
In this paper, we study symmetry-resolved entanglement entropy in free bosonic quantum many-body sys...
Following a sudden change of interactions in an integrable system of one-dimensional fermions, we an...
AbstractIn a scattering process, the final state is determined by an initial state and an S-matrix. ...
Entanglement is one of the most intriguing features of quantum mechanics. It describes non-local cor...
Currently, ‘time’ does not play any essential role in quantum information theory. In this sense, qua...
We discuss quantum entanglement in the context of the thermodynamic arrow of time. We review the rol...
We study the proposal by Kharzeev-Levin to determine entanglement entropy in Deep Inelastic Scatteri...
Despite its ubiquity in quantum computation and quantum information, a universally applicable defini...
An algebraic approach to the study of entanglement entropy of quantum systems is reviewed. Starting ...
The Schwinger process in strong electric fields creates particles and antiparticles that are entangl...
The study of the entanglement dynamics plays a fundamental role in understanding the behaviour of ma...
Following up on a recent analysis of two cold atoms in a time-dependent harmonic trap in one dimensi...
We derive the entanglement entropy of chiral fermions on the circle at arbitrary temperature. The sp...
We explore the relation between entanglement entropy of quantum many-body systems and the distributi...
We compute the pseudo entropy in two-dimensional holographic and free Dirac fermion CFTs for excited...
In this paper, we study symmetry-resolved entanglement entropy in free bosonic quantum many-body sys...
Following a sudden change of interactions in an integrable system of one-dimensional fermions, we an...
AbstractIn a scattering process, the final state is determined by an initial state and an S-matrix. ...
Entanglement is one of the most intriguing features of quantum mechanics. It describes non-local cor...
Currently, ‘time’ does not play any essential role in quantum information theory. In this sense, qua...
We discuss quantum entanglement in the context of the thermodynamic arrow of time. We review the rol...
We study the proposal by Kharzeev-Levin to determine entanglement entropy in Deep Inelastic Scatteri...
Despite its ubiquity in quantum computation and quantum information, a universally applicable defini...
An algebraic approach to the study of entanglement entropy of quantum systems is reviewed. Starting ...