We study the unitary time evolution of a simple quantum Hamiltonian describing two harmonic oscillators coupled via a three-level system. The latter acts as an engine transferring energy from one oscillator to the other and is driven in a cyclic manner by time-dependent external fields. The S-matrix (scattering matrix) of the cycle is obtained in analytic form. The total number of quanta contained in the system is a conserved quantity. As a consequence, the spectrum of the S-matrix is purely discrete, and the evolution of the system is quasi-periodic. The explicit knowledge of the S-matrix makes it possible to do accurate numerical evaluations of the time-dependent wave function. They confirm the quasi-periodic behavior. In particular, the ...
The Schroedinger equation is used to describe a quantum system evolving in time by a non-Hermitian H...
In this article, we formulate the study of the unitary time evolution of systems consisting of an in...
Abstract. We study a microscopic Hamiltonian model describing an N-level quantum system S coupled to...
We study the unitary time evolution of a simple quantum Hamiltonian describing two harmonic oscillat...
Stemming from the time-dependent Schrödinger equation, it is noted that any Hermitian form represent...
We consider the possibility that both classical statistical mechanical systems as well as quantum me...
The problem of the interaction of a quantum system having discrete states, with a classical oscillat...
We present theoretical methods for studying quantum mechanical systems subjected to fast periodic dr...
It is proven that the energy of a quantum mechanical harmonic oscillator with a generically time-dep...
Light harvesting complexes have naturally developed structures such that energy transfer processes o...
For studying the dynamics of a two-level system coupled to a quantum oscillator we have presented an...
The exchange of energy between a classical open system and its environment can be analyzed for a sin...
We present a theoretical method to generate a highly accurate time-independent Hamiltonian governing...
Quantum characteristics of a mass-accreting oscillator are investigated using the invariant operator...
In this work we present the classical and quantum solutions of time-dependent coupled harmonic oscil...
The Schroedinger equation is used to describe a quantum system evolving in time by a non-Hermitian H...
In this article, we formulate the study of the unitary time evolution of systems consisting of an in...
Abstract. We study a microscopic Hamiltonian model describing an N-level quantum system S coupled to...
We study the unitary time evolution of a simple quantum Hamiltonian describing two harmonic oscillat...
Stemming from the time-dependent Schrödinger equation, it is noted that any Hermitian form represent...
We consider the possibility that both classical statistical mechanical systems as well as quantum me...
The problem of the interaction of a quantum system having discrete states, with a classical oscillat...
We present theoretical methods for studying quantum mechanical systems subjected to fast periodic dr...
It is proven that the energy of a quantum mechanical harmonic oscillator with a generically time-dep...
Light harvesting complexes have naturally developed structures such that energy transfer processes o...
For studying the dynamics of a two-level system coupled to a quantum oscillator we have presented an...
The exchange of energy between a classical open system and its environment can be analyzed for a sin...
We present a theoretical method to generate a highly accurate time-independent Hamiltonian governing...
Quantum characteristics of a mass-accreting oscillator are investigated using the invariant operator...
In this work we present the classical and quantum solutions of time-dependent coupled harmonic oscil...
The Schroedinger equation is used to describe a quantum system evolving in time by a non-Hermitian H...
In this article, we formulate the study of the unitary time evolution of systems consisting of an in...
Abstract. We study a microscopic Hamiltonian model describing an N-level quantum system S coupled to...