Inhomogeneous State of Few-Fermion Superfluids
P. O. Bugnion, J. A. Lofthouse, G. J. Conduit
Abstract
Open-access reader
P. O. Bugnion, J. A. Lofthouse, G. J. Conduit
Abstract
Open-access reader
The few-fermion atomic gas is an ideal setting to explore inhomogeneous superfluid pairing analogous to the Larkin-Ovchinnikov state. Two up and one down-spin atom is the minimal configuration that displays an inhomogeneous pairing density, whereas imbalanced systems containing more fermions present a more complex pairing topology. With more than eight atoms trapped the system approaches the macroscopic superfluid limit. An oblate trap with a central barrier offers a direct experimental probe of pairing inhomogeneity.
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The few-fermion atomic gas is an ideal setting to explore inhomogeneous superfluid pairing analogous to the Larkin-Ovchinnikov state. Two up and one down-spin atom is the minimal configuration that displays an inhomogeneous pairing density, whereas imbalanced systems containing more fermions present a more complex pairing topology. With more than eight atoms trapped the system approaches the macroscopic superfluid limit. An oblate trap with a central barrier offers a direct experimental probe of pairing inhomogeneity.
Key concepts: Pairing, Fermion, Superfluidity, Physics, Spin (aerodynamics), Ideal (ethics), Condensed matter physics, Ultracold atom