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Flux-tunable Kitaev chain in a quantum dot array

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arxiv 2402.07575 v3 pith:5MLZFPSC submitted 2024-02-12 cond-mat.mes-hall

classification cond-mat.mes-hall
keywords kitaevphaseandreevboundchainjunctionquantumstates
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abstract

Connecting quantum dots through Andreev bound states in a semiconductor-superconductor hybrid provides a platform to create a Kitaev chain. Interestingly, in a double quantum dot, a pair of poor man's Majorana zero modes can emerge when the system is fine-tuned to a sweet spot, where superconducting and normal couplings are equal in magnitude. Control of the Andreev bound states is crucial for achieving this, usually implemented by varying its chemical potential. In this work, we propose using Andreev bound states in a short Josephson junction to mediate both types of couplings, with the ratio tunable by the phase difference across the junction. Now a minimal Kitaev chain can be easily tuned into the strong coupling regime by varying the phase and junction asymmetry, even without changing the dot-hybrid coupling strength. Furthermore, we identify an optimal sweet spot at $\pi$ phase, enhancing the excitation gap and robustness against phase fluctuations. Our proposal introduces a new device platform and a new tuning method for realizing quantum-dot-based Kitaev chains.

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Reviewed papers in the Pith corpus that reference this work. Sorted by Pith novelty score. Full citation record

  1. A flux-controlled two-site Kitaev chain

    cond-mat.mes-hall 2025-01 conditional novelty 6.0 of 10

    A flux-tunable superconducting loop provides phase control over the coupling between two quantum dots, enabling continuous tuning to poor man's Majorana sweet spots and a direct probe of their wavefunction.

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