|国家预印本平台
首页|Gate reflectometry in a minimal Kitaev chain device

Gate reflectometry in a minimal Kitaev chain device

Gate reflectometry in a minimal Kitaev chain device

来源:Arxiv_logoArxiv
英文摘要

Hybrid quantum dot (QD)-superconductor system can be used to realize Majorana zero modes in artificial Kitaev chains. These chains provide a promising platform for the realization of Majorana qubits. Radio-frequency (RF) gate reflectometry is a fast, non-invasive, and sensitive technique that can be used to read out such qubits. In this work, we use gate reflectometry to probe two QDs coupled via a semiconductor-superconductor hybrid segment. We demonstrate that gate sensing can resolve charge stability diagrams and clearly distinguish between elastic cotunneling and crossed-Andreev reflection, the two key processes that allow one to form a Kitaev chain. Furthermore, we show that this information is accessible, even when the system is completely decoupled from the from the normal leads. In this closed regime, we show that the observed quantum capacitance signal is indicative of parity switching between the even and odd ground states. Our measurements in both open and closed regimes confirm that gate reflectometry captures the essential features of interdot coupling and parity dynamics.

Tijl Degroote、Christian G. Prosko、Sebastiaan L. D. ten Haaf、Nick van Loo、Francesco Zatelli、Srijit Goswami、Yining Zhang、Ivan Kulesh

半导体技术无线电、电信测量技术及仪器

Tijl Degroote,Christian G. Prosko,Sebastiaan L. D. ten Haaf,Nick van Loo,Francesco Zatelli,Srijit Goswami,Yining Zhang,Ivan Kulesh.Gate reflectometry in a minimal Kitaev chain device[EB/OL].(2025-08-08)[2025-08-24].https://arxiv.org/abs/2508.06403.点此复制

评论