We use the quantum sine-Gordon model to describe the low-energy dynamics of a pair of coupled one-dimensional condensates of interacting atoms. We show that the nontrivial excitation spectrum of the quantum sine-Gordon model, which includes soliton and breather excitations, can be observed in experiments with time-dependent modulation of the tunneling amplitude, potential difference between condensates, or phase of tunneling amplitude. We use the form-factor approach to compute structure factors corresponding to all three types of perturbations.Physic
or use of any of the information contained in it must acknowledge this thesis as the source of the q...
We study a quantum many-body variant of the parametric oscillator, by investigating the driven sine-...
In this thesis we investigate the properties of ultra-cold quantum gases in reduced dimension and th...
We consider two weakly interacting quasi-1D condensates of cold bosonic atoms. It turns out that a t...
This thesis presents four theoretical studies on pairs of tunnel-coupled one-dimensional Bose gases....
We investigate the relative phase between two weakly interacting 1D condensates of bosonic atoms aft...
We consider two weakly interacting quasi-1D condensates of cold bosonic atoms. It turns out that a t...
In this thesis we study the physics of quantum many-body systems confined to one-dimensional geometr...
The quantum sine-Gordon model is the simplest massive interacting integrable quantum field theory wh...
We propose a scheme for investigating the quantum dynamics of interacting electron models by means o...
We study dynamically coupled one-dimensional Bose-Hubbard models and solve for the wave functions an...
The extended Bose-Hubbard model for a double-well potential with atom-pair tunneling is studied. Sta...
In this work we experimentally study the rich interplay of a linear coupling and non-linear interact...
We investigate theoretically soliton excitations and dynamics of their formation in strongly correla...
We report on the observation of the phase dynamics of interacting one-dimensional ultracold bosonic ...
or use of any of the information contained in it must acknowledge this thesis as the source of the q...
We study a quantum many-body variant of the parametric oscillator, by investigating the driven sine-...
In this thesis we investigate the properties of ultra-cold quantum gases in reduced dimension and th...
We consider two weakly interacting quasi-1D condensates of cold bosonic atoms. It turns out that a t...
This thesis presents four theoretical studies on pairs of tunnel-coupled one-dimensional Bose gases....
We investigate the relative phase between two weakly interacting 1D condensates of bosonic atoms aft...
We consider two weakly interacting quasi-1D condensates of cold bosonic atoms. It turns out that a t...
In this thesis we study the physics of quantum many-body systems confined to one-dimensional geometr...
The quantum sine-Gordon model is the simplest massive interacting integrable quantum field theory wh...
We propose a scheme for investigating the quantum dynamics of interacting electron models by means o...
We study dynamically coupled one-dimensional Bose-Hubbard models and solve for the wave functions an...
The extended Bose-Hubbard model for a double-well potential with atom-pair tunneling is studied. Sta...
In this work we experimentally study the rich interplay of a linear coupling and non-linear interact...
We investigate theoretically soliton excitations and dynamics of their formation in strongly correla...
We report on the observation of the phase dynamics of interacting one-dimensional ultracold bosonic ...
or use of any of the information contained in it must acknowledge this thesis as the source of the q...
We study a quantum many-body variant of the parametric oscillator, by investigating the driven sine-...
In this thesis we investigate the properties of ultra-cold quantum gases in reduced dimension and th...