We present a novel approximation scheme to describe the influence of a harmonic bath on the dynamics of a two-level particle over almost the whole regime of temperatures and coupling to the environment, for a wide class of bath spectral densities. Starting from the exact path-integral solution for the two-level system density matrix, effective intra-blip correlations are fully included, while inter-blip and blip-sojourn interactions are considered up to first order. In the proper regimes, an excellent agreement with conventional perturbative approaches and ab-initio path-integral results is found
With a decomposition scheme for the bath correlation function, the hierarchy equation of motion (HEO...
Strong coupling between a system and its environment leads to the emergence of non-Markovian dynamic...
A study of the dynamics of a tunneling particle in a driven bistable potential which is moderately-t...
We present a novel approximation scheme to describe the influence of a harmonic bath on the dynamics...
We present a novel approximation scheme to describe the influence of a harmonic bath on the dynamics...
A generalized approximation scheme is proposed to describe the dynamics of the spin-boson problem. B...
We propose an approximation scheme to describe the dynamics of the spin-boson model when the spectra...
The dissipative dynamics of a quantum bistable system coupled to a Ohmic heat bath is investigated b...
We propose an approximation scheme to describe the dynamics of the spin-boson model when the spectra...
Dynamics of the sub-Ohmic spin-boson model is examined using three numerical approaches, namely the ...
Abstract. We propose an approximation scheme to describe the dynamics of the spin-boson model when t...
We investigate the dynamics of the spin-boson model when the spectral density of the boson bath show...
A quantum two-level system immersed in a sub-Ohmic bath experiences enhanced low-frequency quantum s...
In this PhD thesis we have been concerned with dissipative and decoherence processes which take plac...
The decoherence of a two-state system coupled with a sub-Ohmic bath is investigated theoretically by...
With a decomposition scheme for the bath correlation function, the hierarchy equation of motion (HEO...
Strong coupling between a system and its environment leads to the emergence of non-Markovian dynamic...
A study of the dynamics of a tunneling particle in a driven bistable potential which is moderately-t...
We present a novel approximation scheme to describe the influence of a harmonic bath on the dynamics...
We present a novel approximation scheme to describe the influence of a harmonic bath on the dynamics...
A generalized approximation scheme is proposed to describe the dynamics of the spin-boson problem. B...
We propose an approximation scheme to describe the dynamics of the spin-boson model when the spectra...
The dissipative dynamics of a quantum bistable system coupled to a Ohmic heat bath is investigated b...
We propose an approximation scheme to describe the dynamics of the spin-boson model when the spectra...
Dynamics of the sub-Ohmic spin-boson model is examined using three numerical approaches, namely the ...
Abstract. We propose an approximation scheme to describe the dynamics of the spin-boson model when t...
We investigate the dynamics of the spin-boson model when the spectral density of the boson bath show...
A quantum two-level system immersed in a sub-Ohmic bath experiences enhanced low-frequency quantum s...
In this PhD thesis we have been concerned with dissipative and decoherence processes which take plac...
The decoherence of a two-state system coupled with a sub-Ohmic bath is investigated theoretically by...
With a decomposition scheme for the bath correlation function, the hierarchy equation of motion (HEO...
Strong coupling between a system and its environment leads to the emergence of non-Markovian dynamic...
A study of the dynamics of a tunneling particle in a driven bistable potential which is moderately-t...