Exceptional points emerge in the complex eigenspecra of non-Hermitian systems, and give rise to rich critical behaviors. An outstanding example is the chiral state transfer, where states can swap under an adiabatic encircling around the exceptional point, but only along one direction. In dissipative quantum systems, such exceptional-point encirclings are often accompanied by decoherence, whose impact is beyond the description of non-Hermitian Hamiltonians. In this work, we study in detail the effects of dephasing on the encircling dynamics, adopting the full Lindblad master equation. Introducing experimentally relevant quantum-jump processes that account for dephasing, we show that gaps emerge in the eigenspectra landscape of the correspond...
Dissipation in a quantum system can have dramatic impact on its phases and phase transitions, but of...
Non-Hermitian systems with parity-time (PT) symmetry and anti-PT symmetry lead to exceptional points...
The exceptional points (EPs) of non-Hermitian Hamiltonians (NHHs) are spectral degeneracies associat...
Exceptional points emerge in the complex eigenspecra of non-Hermitian systems, and give rise to rich...
Exceptional points, at which two or more eigenfunctions of a Hamiltonian coalesce, occur in non-Herm...
Open quantum systems have become a rapidly developing sector for research. Such systems present nove...
Dynamically varying system parameters along a path enclosing an exceptional point is known to lead t...
Open quantum systems have become a rapidly developing sector for research. Such systems present nove...
The most intriguing properties of non-Hermitian systems are found near the exceptional points (EPs) ...
In the framework of non-Hermitian quantum physics, the relation between exceptional points,dynamical...
We investigate decoherence in the limit where the interaction with the environment is weak and the e...
The Exceptional Points (EPs) of non-Hermitian Hamiltonians (NHHs) are spectral degeneracies associat...
Decoherence and non-Hermiticity are two different effects of the open quantum systems. Both of them ...
The eigenvalues of a non-Hermitian Hamilton operator are complex and provide not only the energies b...
We develop perturbative methods to study and control dynamical phenomena related to exceptional poin...
Dissipation in a quantum system can have dramatic impact on its phases and phase transitions, but of...
Non-Hermitian systems with parity-time (PT) symmetry and anti-PT symmetry lead to exceptional points...
The exceptional points (EPs) of non-Hermitian Hamiltonians (NHHs) are spectral degeneracies associat...
Exceptional points emerge in the complex eigenspecra of non-Hermitian systems, and give rise to rich...
Exceptional points, at which two or more eigenfunctions of a Hamiltonian coalesce, occur in non-Herm...
Open quantum systems have become a rapidly developing sector for research. Such systems present nove...
Dynamically varying system parameters along a path enclosing an exceptional point is known to lead t...
Open quantum systems have become a rapidly developing sector for research. Such systems present nove...
The most intriguing properties of non-Hermitian systems are found near the exceptional points (EPs) ...
In the framework of non-Hermitian quantum physics, the relation between exceptional points,dynamical...
We investigate decoherence in the limit where the interaction with the environment is weak and the e...
The Exceptional Points (EPs) of non-Hermitian Hamiltonians (NHHs) are spectral degeneracies associat...
Decoherence and non-Hermiticity are two different effects of the open quantum systems. Both of them ...
The eigenvalues of a non-Hermitian Hamilton operator are complex and provide not only the energies b...
We develop perturbative methods to study and control dynamical phenomena related to exceptional poin...
Dissipation in a quantum system can have dramatic impact on its phases and phase transitions, but of...
Non-Hermitian systems with parity-time (PT) symmetry and anti-PT symmetry lead to exceptional points...
The exceptional points (EPs) of non-Hermitian Hamiltonians (NHHs) are spectral degeneracies associat...