We present analytical results for the nonlocal pair correlations in one-dimensional bosonic systems with repulsive contact interactions that are uniformly valid from the classical regime of high temperatures down to weak quantum degeneracy entering the regime of ultralow temperatures. By using the information contained in the short-time approximations of the full many-body propagator we derive results that are non-perturbative in the interaction parameter while covering a wide range of temperatures and densities. For the case of three particles we give a simple formula for arbitrary couplings that is exact in the dilute limit while remaining valid up to the regime where the thermal de Broglie wavelength λT is of the order of the characteris...
We calculate the two-particle local correlation for an interacting 1D Bose gas at finite temperature...
Due to the vast growth of the many-body level density with excitation energy, its smoothed form is o...
Due to the vast growth of the many-body level density with excitation energy, its smoothed form is o...
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 ...
We analytically calculate the spatial nonlocal pair correlation function for an interacting uniform ...
We derive exact analytic expressions for the n-body local correlations in the one-dimensional Bose g...
The behavior of the spatial two-particle correlation function is surveyed in detail for a uniform on...
In this thesis we study the physics of quantum many-body systems confined to one-dimensional geometr...
Quantum Mechanics was established as the theory of the microscopic world, which allowed to understan...
Quantum Mechanics was established as the theory of the microscopic world, which allowed to understan...
We calculate the two-particle local correlation for an interacting 1D Bose gas at finite temperature...
Due to the vast growth of the many-body level density with excitation energy, its smoothed form is o...
Due to the vast growth of the many-body level density with excitation energy, its smoothed form is o...
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 ...
We analytically calculate the spatial nonlocal pair correlation function for an interacting uniform ...
We derive exact analytic expressions for the n-body local correlations in the one-dimensional Bose g...
The behavior of the spatial two-particle correlation function is surveyed in detail for a uniform on...
In this thesis we study the physics of quantum many-body systems confined to one-dimensional geometr...
Quantum Mechanics was established as the theory of the microscopic world, which allowed to understan...
Quantum Mechanics was established as the theory of the microscopic world, which allowed to understan...
We calculate the two-particle local correlation for an interacting 1D Bose gas at finite temperature...
Due to the vast growth of the many-body level density with excitation energy, its smoothed form is o...
Due to the vast growth of the many-body level density with excitation energy, its smoothed form is o...