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Impurity-induced pairing in two-dimensional Fermi gases

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arxiv 2211.12495 v2 pith:KLTWRPJ6 submitted 2022-11-22 cond-mat.quant-gas cond-mat.mes-hallcond-mat.str-el

classification cond-mat.quant-gascond-mat.mes-hallcond-mat.str-el
keywords pairingfinitesystemsbeyondconfinementinteractionproblemquantum
verification ladder T0 review T1 audit T2 compute T3 formal
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We study induced pairing between two identical fermions mediated by an attractively interacting quantum impurity in two-dimensional systems. Based on a Stochastic Variational Method (SVM), we investigate the influence of confinement and finite interaction range effects on the mass ratio beyond which the ground state of the quantum three-body problem undergoes a transition from a composite bosonic trimer to an unbound dimer-fermion state. We find that confinement as well as a finite interaction range can greatly enhance trimer stability, bringing it within reach of experimental implementations such as found in ultracold atom systems. In the context of solid-state physics, our solution of the confined three-body problem shows that exciton-mediated interactions can become so dominant that they can even overcome detrimental Coulomb repulsion between electrons in atomically-thin semiconductors. Our work thus paves the way towards a universal understanding of boson-induced pairing across various fermionic systems at finite density, and opens perspectives towards realizing novel forms of electron pairing beyond the conventional paradigm of Cooper pair formation.

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