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arxiv: 2602.14426 · v1 · pith:ARMXDQWMnew · submitted 2026-02-16 · 🪐 quant-ph · cond-mat.mes-hall

Electron readout contrast enhancement in the parallel nuclear regime of an exchange-coupled donor spin qubit system

classification 🪐 quant-ph cond-mat.mes-hall
keywords donorreadoutelectronparallelspincontrastnucleidonor-based
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Recent experiments on donor-based spin qubits in silicon have leveraged the exchange interaction between electrons bound to separate donor nuclei to perform two-qubit operations. A consistently observed yet unexplained phenomenon in such systems is the significant increase in electron readout contrast, measured via Elzerman-style readout to a single-electron transistor (SET) island, when the donor nuclei are initialized in a parallel spin orientation compared to an anti-parallel orientation. In this work, we present a detailed analysis of the exchange-coupled donor system in the parallel nuclear regime and propose a physical mechanism for this effect. We attribute the enhanced readout contrast to an additional electron tunneling event to the SET during a single read period, when the donor nuclei are aligned in a parallel spin configuration. These insights inform strategies for improving electron readout fidelity in these systems and contribute to a more complete understanding of spin-dependent tunnelling processes in donor-based qubit architectures.

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