In this work we discuss the emergence of p-wave superfluids of identical fermions in 2D lattices. The optical lattice potential manifests itself in an interplay between an increase in the density of states on the Fermi surface and the modification of the fermion-fermion interaction (scattering) amplitude. The density of states is enhanced due to an increase of the effective mass of atoms. In deep lattices, for short-range interacting atoms the scattering amplitude is strongly reduced compared to free space due to a small overlap of wavefunctions of fermions sitting in the neighboring lattice sites, which suppresses the p-wave superfluidity. However, we show that for a moderate lattice depth there is still a possibility to create atomic p-wave superfluids with sizable transition temperatures. The situation is drastically different for fermionic polar molecules. Being dressed with a microwave field, they acquire a dipole-dipole attractive tail in the interaction potential. Then, due to a long-range character of the dipole-dipole interaction, the effect of the suppression of the scattering amplitude in 2D lattices is absent. This leads to the emergence of a stable topological px + ipy superfluid of identical microwave-dressed polar molecules.
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28 February 2018
FOURTH INTERNATIONAL CONFERENCE ON QUANTUM TECHNOLOGIES (ICQT-2017)
12–16 July 2017
Moscow, Russia
Research Article|
February 28 2018
Superfluidity of identical fermions in an optical lattice: Atoms and polar molecules
A. K. Fedorov;
A. K. Fedorov
a
1
Russian Quantum Center
, Skolkovo, Moscow 143025, Russia
a)Corresponding author: akf@rqc.ru (A.K.F.)
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V. I. Yudson;
V. I. Yudson
1
Russian Quantum Center
, Skolkovo, Moscow 143025, Russia
2
Laboratory for Condensed Matter Physics, National Research University Higher School of Economics
, Moscow 101000, Russia
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G. V. Shlyapnikov
G. V. Shlyapnikov
1
Russian Quantum Center
, Skolkovo, Moscow 143025, Russia
3
SPEC, CEA, CNRS, Université Paris-Saclay, CEA Saclay
, Gif sur Yvette 91191, France
4
LPTMS, CNRS, Univ. Paris-Sud, Université Paris-Saclay
, Orsay 91405, France
5
Van der Waals-Zeeman Institute, Institute of Physics, University of Amsterdam
, Science Park 904, 1098 XH Amsterdam, The Netherlands
6
Wuhan Institute of Physics and Mathematics, Chinese Academy of Sciences
, 430071 Wuhan, China
7
Russian Quantum Center, National University of Science and Technology MISIS
, Moscow 119049, Russia
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a)Corresponding author: akf@rqc.ru (A.K.F.)
AIP Conf. Proc. 1936, 020022 (2018)
Citation
A. K. Fedorov, V. I. Yudson, G. V. Shlyapnikov; Superfluidity of identical fermions in an optical lattice: Atoms and polar molecules. AIP Conf. Proc. 28 February 2018; 1936 (1): 020022. https://doi.org/10.1063/1.5025460
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