The phenomenon of quantum chaos is investigated by employing the model of an electron moving in coupled nonlinear two-dimensional oscillators, namely, coupled quartic and coupled double-well oscillators, under intense laser fields. The unperturbed ground-state wavefunctions of the oscillators, obtained by solving the time-dependent Schrödinger equation (TDSE) in imaginary time, are evolved in real time by numerically solving the TDSE. Various signatures like autocorrelation function, distance function, quantum "phase space" volume, "phase space" trajectories and overlap integral (similar to quantum fidelity or Loschmidt echo) have been studied to diagnose quantum chaos in terms of sensitivity towards an initial state characterized by a...
The quantum delta-kicked rotor has been one of the workhorses in the experimental investigation of q...
The work described m this thesis is based on a detailed analysis of the classical and quantum non li...
The quantum signature of chaos in Rydberg atoms has been sutdied using a quantum theory of motion an...
The phenomenon of quantum chaos is investigated by employing the model of an electron moving in coup...
The quantum dynamics of an electron moving under the Henon-Heiles (HH) potential in the presence of ...
Chaotic behavior of laser oscillation is investigated by numerical calculation of quantum statistica...
The study of dynamical quantum systems, which are classically chaotic, and the search for quantum ma...
We discuss recent experimental and theoretical investigations of quantum dynamics in periodically ki...
A model is investigated where a monochromatic, spatially homogeneous laser field interacts with an e...
Quantum domain behaviour of classically chaotic systems is studied using the quantum theory of motio...
Quantum systems under the action of laser of microwave radiation are considered in the paper aiming ...
We approach quantum dynamics in one spatial dimension from a systematic study of moments starting fr...
Dynamical behavior of chemical reactivity indices like electronegativity, hardness, polarizability, ...
316-322Quantum dynamics of an undamped single-well Duffing oscillator in presence of a monochromat...
Several quantum phenomena have been experimentally investigated using the system of ultra-cold atoms...
The quantum delta-kicked rotor has been one of the workhorses in the experimental investigation of q...
The work described m this thesis is based on a detailed analysis of the classical and quantum non li...
The quantum signature of chaos in Rydberg atoms has been sutdied using a quantum theory of motion an...
The phenomenon of quantum chaos is investigated by employing the model of an electron moving in coup...
The quantum dynamics of an electron moving under the Henon-Heiles (HH) potential in the presence of ...
Chaotic behavior of laser oscillation is investigated by numerical calculation of quantum statistica...
The study of dynamical quantum systems, which are classically chaotic, and the search for quantum ma...
We discuss recent experimental and theoretical investigations of quantum dynamics in periodically ki...
A model is investigated where a monochromatic, spatially homogeneous laser field interacts with an e...
Quantum domain behaviour of classically chaotic systems is studied using the quantum theory of motio...
Quantum systems under the action of laser of microwave radiation are considered in the paper aiming ...
We approach quantum dynamics in one spatial dimension from a systematic study of moments starting fr...
Dynamical behavior of chemical reactivity indices like electronegativity, hardness, polarizability, ...
316-322Quantum dynamics of an undamped single-well Duffing oscillator in presence of a monochromat...
Several quantum phenomena have been experimentally investigated using the system of ultra-cold atoms...
The quantum delta-kicked rotor has been one of the workhorses in the experimental investigation of q...
The work described m this thesis is based on a detailed analysis of the classical and quantum non li...
The quantum signature of chaos in Rydberg atoms has been sutdied using a quantum theory of motion an...