arXiv · 1205.1086
Antiferrosmectic ground state of two-component dipolar Fermi gases -- an analog of meson condensation in nuclear matter
Abstract
We show that an antiferrosmectic-C phase has lower energy at high densities than the non-magnetized Fermi gas and ferronematic phases in an ultracold gas of fermionic atoms, or molecules, with large magnetic dipole moments. This phase, which is analogous to meson condensation in dense nuclear matter, is a one-dimensional periodic structure in which the fermions localize in layers with their pseudospin direction aligned parallel to the layers, and staggered layer by layer.
Explore related subjects
Keep this discovery
Kenji Maeda, Tetsuo Hatsuda, Gordon Baym. 2012-05-05. Antiferrosmectic ground state of two-component dipolar Fermi gases -- an analog of meson condensation in nuclear matter. https://doi.org/10.1103/physreva.87.021604
Cite the original work for its findings. Save a collection to share your selection of sources.