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HRL Laboratories Silicon Encoded Spin Qubits Achieve Universality press kit (2023) // collaboration with Michael Walsh


HRL Laboratories // Materials and Microsystems Laboratory // Computational Physics Division // Internal Tools // Visualization Group

I lead an interdisciplinary group of designers and engineers in the Computational Physics Division's Visualization Group (in the Materials and Microsystems Laboratory). Visualization work spans a variety of spatial and temporal scales, from quantum physics and materials research, to aerospace + satellite systems.

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Figures for Two-dimensional Si spin qubit arrays with multilevel interconnects," Sieu Ha et al., PRX Quantum 6, 030327 (2025).

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Spin exchange collaboration with Thaddeus D. Ladd for the HRL News press release HRL Laboratories Silicon Encoded Spin Qubits Achieve Universality (2023).




Figures for "Universal logic with encoded spin qubits in silicon," A. J. Weinstein, Nature 615, 817 (2023).

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"Semiconductor spin qubits," Guido Burkard, Thaddeus D. Ladd, Andrew Pan, John M. Nichol, and Jason R. Petta, Rev. Mod. Phys. 95, 025003 (2023).

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Figures and alternate cover for "A flexible design platform for Si/SiGe exchange-only qubits with low disorder," Wonill Ha et al., Nano Lett.2022, 22, 3, 1443 (2021).