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Robust poor man's Majorana zero modes using Yu-Shiba-Rusinov states
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abstract
The recent realization of a two-site Kitaev chain featuring "poor man's Majorana" states demonstrates a path forward in the field of topological superconductivity. Harnessing the potential of these states for quantum information processing, however, requires increasing their robustness to external perturbations. Here, we form a two-site Kitaev chain using proximitized quantum dots hosting Yu-Shiba-Rusinov states. The strong hybridization between such states and the superconductor enables the creation of poor man's Majorana states with a gap larger than $70 \mathrm{~\mu eV}$. It also greatly reduces the charge dispersion compared to Kitaev chains made with non-proximitized quantum dots. The large gap and reduced sensitivity to charge fluctuations will benefit qubit manipulation and demonstration of non-abelian physics using poor man's Majorana states.
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Cited by 1 Pith paper
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A flux-controlled two-site Kitaev chain
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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