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    Quantum capacitance and parity switching of a quantum dot based Kitaev chain

    Chun-Xiao Liu*

    • *Contact author: chunxiaoliu62@sjtu.edu.cn

    Phys. Rev. B 113, 184515 – Published 11 May, 2026

    DOI: https://doi.org/10.1103/tzjr-45sz

    Abstract

    An array of quantum dots coupled via superconductivity provides a new platform for creating Kitaev chains with Majorana zero modes, offering a promising avenue toward topological quantum computing. In this work, we theoretically study the quantum capacitance of a minimal Kitaev chain weakly coupled to an external normal lead. We find that, in the open regime, charge stability diagrams of quantum capcaitance can help to identify the sweet spot of a Kitaev chain, consistent with tunnel spectroscopy. Moreover, the quantum capacitance of a single quantum dot coupled to Andreev bound states reveals the interplay between two distinct parity switching mechanisms: coupling to an external normal lead and intrinsic quasiparticle poisoning. Our work provides useful physical insights into the quantum capacitance and parity dynamics in a quantum-dot-based Kitaev chain device.

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