A layered system of two-dimensional planes containing fermionic polar molecules can potentially realize a number of exotic quantum many-body states. Among the predictions, are density-wave instabilities driven by the anisotropic part of the dipole-dipole interaction in a single layer. However, in typical multilayer setups it is reasonable to expect that the onset and properties of a density-wave are modified by adjacent layers. Here we show that this is indeed the case. For multiple layers the critical strength for the density-wave instability decreases with the number of layers. The effect depends on density and is more pronounced in the low density regime. The lowest so...
The understanding of density waves is a vital component of our insight into electronic quantum matte...
A density wave (DW) is a fundamental type of long-range order in quantum matter tied to self-organiz...
Ultra-cold atom system provides novel technology to simulate traditional solid state physics, includ...
Abstract. A layered system of two-dimensional planes containing fermionic polar molecules can potent...
Abstract. We consider the density wave instability of fermionic dipoles aligned by an external field...
We consider the N-body problem in a layered geometry containing cold polar molecules with ...
We study density wave instabilities in a doubly degenerate Fermi-Fermi mixture with SU(2)×SU(2) symm...
Abstract. We consider the N-body problem in a layered geometry containing cold polar molecules with ...
The incommensurate phase of a bilayer quantum Hall state is found to have a rippled dipole charge ...
We investigate the phase diagram of dipolar fermions with aligned dipole moments in a two-dimensiona...
We show that unconventional spin order arises naturally in two-component dipolar Fermi gases of atom...
Experiments on quantum degenerate Fermi gases of magnetic atoms and dipolar molecules begin to probe...
We present a microscopic many-body calculation investigating the competition between the charge dens...
14 pages, 4 figures; prepared for proceedings of the IV International Conference on Quantum Technolo...
We study the superfluid phases of a Fermi gas in a multilayer optical lattice system in the presence...
The understanding of density waves is a vital component of our insight into electronic quantum matte...
A density wave (DW) is a fundamental type of long-range order in quantum matter tied to self-organiz...
Ultra-cold atom system provides novel technology to simulate traditional solid state physics, includ...
Abstract. A layered system of two-dimensional planes containing fermionic polar molecules can potent...
Abstract. We consider the density wave instability of fermionic dipoles aligned by an external field...
We consider the N-body problem in a layered geometry containing cold polar molecules with ...
We study density wave instabilities in a doubly degenerate Fermi-Fermi mixture with SU(2)×SU(2) symm...
Abstract. We consider the N-body problem in a layered geometry containing cold polar molecules with ...
The incommensurate phase of a bilayer quantum Hall state is found to have a rippled dipole charge ...
We investigate the phase diagram of dipolar fermions with aligned dipole moments in a two-dimensiona...
We show that unconventional spin order arises naturally in two-component dipolar Fermi gases of atom...
Experiments on quantum degenerate Fermi gases of magnetic atoms and dipolar molecules begin to probe...
We present a microscopic many-body calculation investigating the competition between the charge dens...
14 pages, 4 figures; prepared for proceedings of the IV International Conference on Quantum Technolo...
We study the superfluid phases of a Fermi gas in a multilayer optical lattice system in the presence...
The understanding of density waves is a vital component of our insight into electronic quantum matte...
A density wave (DW) is a fundamental type of long-range order in quantum matter tied to self-organiz...
Ultra-cold atom system provides novel technology to simulate traditional solid state physics, includ...