We consider a class of PT-symmetric systems which include mutually matched nonlinear loss and gain (in other words, a class of PT-invariant Hamiltonians in which both the harmonic and anharmonic parts are non-Hermitian). For a basic system in the form o
In the present paper we consider an optical system with a χ (2)-type nonlinearity and unspecified PT...
I review how methods from mesoscopic physics can be applied to describe the multiple wave scattering...
Abstract We study the parity-time (PT) symmetry characteristics and the applications to nonlinear op...
We provide a systematic analysis of a prototypical nonlinear oscillator system respecting PT symmetr...
We review our recent progress in the study of nonlinear systems with balanced gain and loss describe...
With perfectly balanced gain and loss, dynamical systems with indefinite damping can obey the exact ...
In quantum theory, any Hamiltonian describing a physical system is mathematically represented by a s...
A parity-time (PT)-symmetric system emerging from a quantum dynamics is highly desirable in order to...
Parity time (PT) symmetric systems are known to exhibit two distinct phases: those associated with a...
We reveal a number of fundamentally important effects which underpin the key aspects of light propag...
Classical open systems with balanced gain and loss, i.e., parity-time (PT ) symmetric systems, have ...
Non-Hermitian, $\mathcal{PT}$ -symmetric Hamiltonians, experimentally realized in optical systems, a...
We show that nonlinear optical structures involving a balanced gain-loss profile can act as unidirec...
The relevance of parity and time reversal (PT)-symmetric structures in optical systems has been know...
Over the past decade, parity-time (PT)-symmetric Hamiltonians have been experimentally realized in c...
In the present paper we consider an optical system with a χ (2)-type nonlinearity and unspecified PT...
I review how methods from mesoscopic physics can be applied to describe the multiple wave scattering...
Abstract We study the parity-time (PT) symmetry characteristics and the applications to nonlinear op...
We provide a systematic analysis of a prototypical nonlinear oscillator system respecting PT symmetr...
We review our recent progress in the study of nonlinear systems with balanced gain and loss describe...
With perfectly balanced gain and loss, dynamical systems with indefinite damping can obey the exact ...
In quantum theory, any Hamiltonian describing a physical system is mathematically represented by a s...
A parity-time (PT)-symmetric system emerging from a quantum dynamics is highly desirable in order to...
Parity time (PT) symmetric systems are known to exhibit two distinct phases: those associated with a...
We reveal a number of fundamentally important effects which underpin the key aspects of light propag...
Classical open systems with balanced gain and loss, i.e., parity-time (PT ) symmetric systems, have ...
Non-Hermitian, $\mathcal{PT}$ -symmetric Hamiltonians, experimentally realized in optical systems, a...
We show that nonlinear optical structures involving a balanced gain-loss profile can act as unidirec...
The relevance of parity and time reversal (PT)-symmetric structures in optical systems has been know...
Over the past decade, parity-time (PT)-symmetric Hamiltonians have been experimentally realized in c...
In the present paper we consider an optical system with a χ (2)-type nonlinearity and unspecified PT...
I review how methods from mesoscopic physics can be applied to describe the multiple wave scattering...
Abstract We study the parity-time (PT) symmetry characteristics and the applications to nonlinear op...