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Research PaperResearchia:202608.14059

Inductively-protected Andreev (IPA) spin qubit

J. L. del Olmo N.

Abstract

The spin of a quasiparticle trapped in a quantum dot Josephson junction forms the basis of an Andreev spin qubit (ASQ): a semiconductor-superconductor device where the interplay between a localized spin degree of freedom and superconductivity leads to a spin-resolved Josephson potential. In this work, we show that shunting an ASQ with a linear inductor enhances its relaxation time by separating the spin-qubit states into distinct potential wells in phase space, nearly eliminating wavefunction ov...

Submitted: August 14, 2026Subjects: Quantum Physics; Quantum Computing

Description / Details

The spin of a quasiparticle trapped in a quantum dot Josephson junction forms the basis of an Andreev spin qubit (ASQ): a semiconductor-superconductor device where the interplay between a localized spin degree of freedom and superconductivity leads to a spin-resolved Josephson potential. In this work, we show that shunting an ASQ with a linear inductor enhances its relaxation time by separating the spin-qubit states into distinct potential wells in phase space, nearly eliminating wavefunction overlap. The resulting inductively protected Andreev (IPA) spin qubit is equivalent to two fluxoniums in the heavy regime, one for each spin. Thus, the IPA qubit combines the long coherence times, low-frequency ground-state manifold, and large anharmonicity of a protected superconducting qubit with the operational advantages of a spin degree of freedom.


Source: arXiv:2608.13530v1 - http://arxiv.org/abs/2608.13530v1 PDF: https://arxiv.org/pdf/2608.13530v1 Original Link: http://arxiv.org/abs/2608.13530v1

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Date:
Aug 14, 2026
Topic:
Quantum Computing
Area:
Quantum Physics
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