We consider a two-dimensional system of ultracold dipolar fermions with dipole moments aligned in the perpendicular direction. We use the static structure factor information from Fermi-Hypernetted-Chain calculations to obtain the effective many-body dipole–dipole interaction and calculate the many-body effective mass of the system within the G0W approximation to the self-energy. A large cancellation between different contributions to the self-energy results in a weak dependence of the effective mass on the interaction strength over a large range of coupling constants. © 2016, Springer Science+Business Media New York
Motivated by a number of recent experimental studies we have revisited the problem of the microscopi...
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Motivated by a number of recent experimental studies we have revisited the problem of the microscopi...
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We study the repulsive polaron problem in a two-component two-dimensional system of fermionic atoms....
We study Fermi-liquid properties of a weakly interacting two-dimensional gas of single-component fer...
19 pages, 2 figuresInternational audienceWe study Fermi liquid properties of a weakly interacting 2D...
Cataloged from PDF version of article.We study the ground-state properties of a two-dimensional spin...
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Using a combination of results from exact mappings and from mean-field theory we explore the phase d...
We study a two-component mixture of fermionic dipoles in two dimensions at zero temperature, interac...
The energy of ultra-dilute quantum many-body systems is known to exhibit a universal dependence on t...
We study a two-dimensional two-component Fermi gas with attractive or repulsive short-range interact...
Remarkable progress in the field of experimental quantum physics has enabled the preparation of quan...
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We present numerical calculations of the electron effective mass in an interacting ferromagnetic two...
We study the density instabilities of a two-dimensional gas of dipolar fermions with aligned dipole ...
Motivated by a number of recent experimental studies we have revisited the problem of the microscopi...
We consider the problem of a single ? atom in the presence of a Fermi sea of ? atoms, in the vicinit...
We study the repulsive polaron problem in a two-component two-dimensional system of fermionic atoms....