We analytically calculate the spatial nonlocal pair correlation function for an interacting uniform 1D Bose gas at finite temperature and propose an experimental method to measure nonlocal correlations. Our results span six different physical realms, including the weakly and strongly interacting regimes. We show explicitly that the characteristic correlation lengths are given by one of four length scales: the thermal de Broglie wavelength, the mean interparticle separation, the healing length, or the phase coherence length. In all regimes, we identify the profound role of interactions and find that under certain conditions the pair correlation may develop a global maximum at a finite interparticle separation due to the competition between r...
We present analytical results for the nonlocal pair correlations in one-dimensional bosonic systems ...
We derive exact analytic expressions for the n-body local correlations in the one-dimensional Bose g...
The correlation function is an important quantity in the physics of ultracold quantum gases because ...
The behavior of the spatial two-particle correlation function is surveyed in detail for a uniform on...
We calculate the two-particle local correlation for an interacting 1D Bose gas at finite temperature...
We present analytical results for the nonlocal pair correlations in one-dimensional bosonic systems ...
We present analytical results for the nonlocal pair correlations in one-dimensional bosonic systems ...
We present analytical results for the nonlocal pair correlations in one-dimensional bosonic systems ...
We present analytical results for the nonlocal pair correlations in one-dimensional bosonic systems ...
We present analytical results for the nonlocal pair correlations in one-dimensional bosonic systems ...
We present analytical results for the nonlocal pair correlations in one-dimensional bosonic systems ...
In this thesis we study the physics of quantum many-body systems confined to one-dimensional geometr...
We calculate the two-particle local correlation for an interacting 1D Bose gas at finite temperature...
We calculate analytically the nonlocal pair correlation function for an interacting, uniform 1D Bose...
We calculate the density profiles and density correlation functions of the one-dimensional Bose gas ...
We present analytical results for the nonlocal pair correlations in one-dimensional bosonic systems ...
We derive exact analytic expressions for the n-body local correlations in the one-dimensional Bose g...
The correlation function is an important quantity in the physics of ultracold quantum gases because ...
The behavior of the spatial two-particle correlation function is surveyed in detail for a uniform on...
We calculate the two-particle local correlation for an interacting 1D Bose gas at finite temperature...
We present analytical results for the nonlocal pair correlations in one-dimensional bosonic systems ...
We present analytical results for the nonlocal pair correlations in one-dimensional bosonic systems ...
We present analytical results for the nonlocal pair correlations in one-dimensional bosonic systems ...
We present analytical results for the nonlocal pair correlations in one-dimensional bosonic systems ...
We present analytical results for the nonlocal pair correlations in one-dimensional bosonic systems ...
We present analytical results for the nonlocal pair correlations in one-dimensional bosonic systems ...
In this thesis we study the physics of quantum many-body systems confined to one-dimensional geometr...
We calculate the two-particle local correlation for an interacting 1D Bose gas at finite temperature...
We calculate analytically the nonlocal pair correlation function for an interacting, uniform 1D Bose...
We calculate the density profiles and density correlation functions of the one-dimensional Bose gas ...
We present analytical results for the nonlocal pair correlations in one-dimensional bosonic systems ...
We derive exact analytic expressions for the n-body local correlations in the one-dimensional Bose g...
The correlation function is an important quantity in the physics of ultracold quantum gases because ...