Articles with "fermionic atoms" as a keyword



Wave function microscopy: Derivation and anatomy of exact algebraic spinful wave functions and full Wigner-molecular spectra of few highly-correlated rapidly rotating ultracold fermionic atoms

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Published in 2025 at "Physical Review A"

DOI: 10.1103/6hst-g33w

Abstract: Exploring strongly correlated spinful states of few fermionic ultracold atoms in a rapidly rotating trap, an example of which was recently realized for two fermionic $^6$Li atoms in an optical tweezer, we derive analytical (algebraic)… read more here.

Keywords: fermionic atoms; rapidly rotating; anatomy; wigner ... See more keywords

Dark States of Multilevel Fermionic Atoms in Doubly Filled Optical Lattices.

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Published in 2019 at "Physical review letters"

DOI: 10.1103/physrevlett.123.223601

Abstract: We propose to use fermionic atoms with degenerate ground and excited internal levels (F_{g}→F_{e}), loaded into the motional ground state of an optical lattice with two atoms per lattice site, to realize dark states with… read more here.

Keywords: atoms doubly; doubly filled; fermionic atoms; dark states ... See more keywords

Fluctuation-Induced Bistability of Fermionic Atoms Coupled to a Dissipative Cavity.

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Published in 2024 at "Physical review letters"

DOI: 10.1103/physrevlett.134.133602

Abstract: We investigate the steady state phase diagram of fermionic atoms subjected to an optical lattice and coupled to a high finesse optical cavity with photon losses. The coupling between the atoms and the cavity field… read more here.

Keywords: field; fermionic atoms; cavity; self organized ... See more keywords

Magnifying the Wave Function of Interacting Fermionic Atoms.

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Published in 2024 at "Physical review letters"

DOI: 10.1103/wdjr-m2hg

Abstract: Understanding many body systems is a key challenge in physics. Single atom resolved imaging techniques have unlocked access to microscopic correlations in ultracold quantum gases. However they cannot be used when the relevant length scales… read more here.

Keywords: fermionic atoms; function; interacting fermionic; magnifying wave ... See more keywords