We derive and discuss an experimentally realistic model describing ultracold atoms in an optical lattice including a commensurate, but staggered, Zeeman field. The resulting band structure is quite exotic; fermions in the third band have an unusual rounded picture-frame Fermi surface (essentially two concentric squircles), leading to imperfect nesting. We develop a generalized SO(3,1)xSO(3,1) theory describing the spin and charge degrees of freedom simultaneously, and show that the system can develop a coupled spin-charge-density wave order. This ordering is absent in studies of the Hubbard model that treat spin and charge density separatel
11 pages, 7 figuresInternational audienceWe study a system of electrons interacting through long--ra...
We study the interplay between the Zeeman field and spin-orbit coupling (SOC) in harmonically trappe...
We study the interplay between the Zeeman field and spin-orbit coupling (SOC) in harmonically trappe...
We derive and discuss an experimentally realistic model describing ultracold atoms in an optical lat...
We derive and discuss an experimentally realistic model describing ultracold atoms in an optical lat...
We show that unconventional spin order arises naturally in two-component dipolar Fermi gases of atom...
We show that unconventional spin order arises naturally in two-component dipolar Fermi gases of atom...
We show that unconventional spin order arises naturally in two-component dipolar Fermi gases of atom...
SM thankfully acknowledges the financial assistance received from Science and Engineering Research B...
Abstract D2-D8 model admits a numerical solution that corresponds to a charge density wave and a spi...
By using a modulated magnetic field in a Feshbach resonance for ultracold fermionic atoms in optical...
Motivated by the recent experimental evidence of commensurate surface charge-density waves (CDW) in ...
By using a modulated magnetic field in a Feshbach resonance for ultracold fermionic atoms in optical...
Starting from the Hubbard model with the repulsive Coulomb interaction and imperfectly nested Fermi ...
Starting from the Hubbard model with the repulsive Coulomb interaction and imperfectly nested Fermi ...
11 pages, 7 figuresInternational audienceWe study a system of electrons interacting through long--ra...
We study the interplay between the Zeeman field and spin-orbit coupling (SOC) in harmonically trappe...
We study the interplay between the Zeeman field and spin-orbit coupling (SOC) in harmonically trappe...
We derive and discuss an experimentally realistic model describing ultracold atoms in an optical lat...
We derive and discuss an experimentally realistic model describing ultracold atoms in an optical lat...
We show that unconventional spin order arises naturally in two-component dipolar Fermi gases of atom...
We show that unconventional spin order arises naturally in two-component dipolar Fermi gases of atom...
We show that unconventional spin order arises naturally in two-component dipolar Fermi gases of atom...
SM thankfully acknowledges the financial assistance received from Science and Engineering Research B...
Abstract D2-D8 model admits a numerical solution that corresponds to a charge density wave and a spi...
By using a modulated magnetic field in a Feshbach resonance for ultracold fermionic atoms in optical...
Motivated by the recent experimental evidence of commensurate surface charge-density waves (CDW) in ...
By using a modulated magnetic field in a Feshbach resonance for ultracold fermionic atoms in optical...
Starting from the Hubbard model with the repulsive Coulomb interaction and imperfectly nested Fermi ...
Starting from the Hubbard model with the repulsive Coulomb interaction and imperfectly nested Fermi ...
11 pages, 7 figuresInternational audienceWe study a system of electrons interacting through long--ra...
We study the interplay between the Zeeman field and spin-orbit coupling (SOC) in harmonically trappe...
We study the interplay between the Zeeman field and spin-orbit coupling (SOC) in harmonically trappe...