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20232025
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quant-ph2025

Maximizing the nondemolition nature of a quantum measurement via an adaptive readout protocol

Arjen Vaartjes, Rocky Yue Su, Laura A. O'Neill +15

Quantum error correction (QEC) requires non-invasive measurements for fault tolerant quantum computing. Deviations from ideal quantum non-demolition (QND) measurements can disturb…

quant-ph2024

Spin Qubits with Scalable milli-kelvin CMOS Control

Samuel K. Bartee, Will Gilbert, Kun Zuo +14

A key virtue of spin qubits is their sub-micron footprint, enabling a single silicon chip to host the millions of qubits required to execute useful quantum algorithms with error co…

quant-ph2023

Tomography of entangling two-qubit logic operations in exchange-coupled donor electron spin qubits

Holly G. Stemp, Serwan Asaad, Mark R. van Blankenstein +19

Scalable quantum processors require high-fidelity universal quantum logic operations in a manufacturable physical platform. Donors in silicon provide atomic size, excellent quantum…

quant-ph2023

High-fidelity operation and algorithmic initialisation of spin qubits above one kelvin

Jonathan Y. Huang, Rocky Y. Su, Wee Han Lim +23

The encoding of qubits in semiconductor spin carriers has been recognised as a promising approach to a commercial quantum computer that can be lithographically produced and integra…

quant-ph2023

Characterizing non-Markovian Quantum Process by Fast Bayesian Tomography

R. Y. Su, J. Y. Huang, N. Dumoulin. Stuyck +15

To push gate performance to levels beyond the thresholds for quantum error correction, it is important to characterize the error sources occurring on quantum gates. However, the ch…