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High-quality poor man's Majorana bound states from cavity embedding
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Poor man's Majorana Bound States (MBS) arise in minimal Kitaev chains when the parameters are fine-tuned to a sweet spot. We consider an interacting two-site Kitaev chain coupled to a single-mode cavity and show that the sweet spot condition can be controlled with the cavity frequency and the hopping between sites. Furthermore, we demonstrate that photon-mediated effective interactions can be used to screen intrinsic interactions, improving the original quality of the MBS. We describe experimental signatures in the cavity transmission to detect their presence and quality. Our work proposes a new way to tune poor man's MBS in a quantum dot array coupled to a cavity.
Forward citations
Cited by 3 Pith papers
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Cavity-modified quantum electron transport in multi-terminal devices and interferometers
Cavity vacuum fields, acting through long-range electron hopping, can break integer quantum Hall quantization, suppress point-contact conductance plateaus, and modify Aharonov-Bohm interference visibility in multi-ter...
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A Theoretical Study of Cavity-modulated Topological Anderson Insulators
Cavity photons renormalize hopping amplitudes in a disordered long-range SSH chain and thereby shift topological phase boundaries and the critical disorder for topological Anderson insulator transitions.
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