Using a combination of results from exact mappings and from mean-field theory we explore the phase diagram of quasi-one-dimensional systems of identical fermions with attractive dipolar interactions. We demonstrate that at low density these systems provide a realization of a single-component one-dimensional Fermi gas with a generalized contact interaction. Using an exact duality between one-dimensional Fermi and Bose gases, we show that when the dipole moment is strong enough, bound many-body states exist, and we calculate the critical coupling strength for the emergence of these states. At higher densities, the Hartree-Fock approximation is accurate, and by combining the two approaches we determine the structure of the phase diagram. The m...
This article briefly reviews recent theoretical developments in quantum critical phenomena in one-di...
<p><strong>Figure 1.</strong> The lowest order particle–hole diagram which generates the induced int...
The formation of bound states of fermions in one dimension has always been one of the key topics in ...
Using a combination of results from exact mappings and from mean-field theory we explore the phase d...
In this Rapid Communication, we investigate the universal properties of a spin-polarized two-compone...
4 pages, 5 figuresInternational audienceWe study a simple model of N-component fermions with contact...
A major challenge in modern physics is to accurately describe strongly interacting quantum many-body...
Rapid progress in the field of ultracold atoms allows the study of many new and old models of quantu...
© 2014 Dr. Brendan Craig MulkerinThe experimental realisation of ultracold quantum gases offers a ne...
We study Fermi-liquid properties of a weakly interacting two-dimensional gas of single-component fer...
Ultra-cold atomic Fermi gases at nano-Kelvin temperatures provide a new paradigm for the foundations...
19 pages, 2 figuresInternational audienceWe study Fermi liquid properties of a weakly interacting 2D...
Systems of strongly interacting dipoles offer an attractive platform to study many-body localized ph...
Due to the vast growth of the many-body level density with excitation energy, its smoothed form is o...
Because of the vast growth of the many-body level density with excitation energy, its smoothed form ...
This article briefly reviews recent theoretical developments in quantum critical phenomena in one-di...
<p><strong>Figure 1.</strong> The lowest order particle–hole diagram which generates the induced int...
The formation of bound states of fermions in one dimension has always been one of the key topics in ...
Using a combination of results from exact mappings and from mean-field theory we explore the phase d...
In this Rapid Communication, we investigate the universal properties of a spin-polarized two-compone...
4 pages, 5 figuresInternational audienceWe study a simple model of N-component fermions with contact...
A major challenge in modern physics is to accurately describe strongly interacting quantum many-body...
Rapid progress in the field of ultracold atoms allows the study of many new and old models of quantu...
© 2014 Dr. Brendan Craig MulkerinThe experimental realisation of ultracold quantum gases offers a ne...
We study Fermi-liquid properties of a weakly interacting two-dimensional gas of single-component fer...
Ultra-cold atomic Fermi gases at nano-Kelvin temperatures provide a new paradigm for the foundations...
19 pages, 2 figuresInternational audienceWe study Fermi liquid properties of a weakly interacting 2D...
Systems of strongly interacting dipoles offer an attractive platform to study many-body localized ph...
Due to the vast growth of the many-body level density with excitation energy, its smoothed form is o...
Because of the vast growth of the many-body level density with excitation energy, its smoothed form ...
This article briefly reviews recent theoretical developments in quantum critical phenomena in one-di...
<p><strong>Figure 1.</strong> The lowest order particle–hole diagram which generates the induced int...
The formation of bound states of fermions in one dimension has always been one of the key topics in ...