Trapped-ion quantum computers are a leading candidate for scalable fault-tolerant quantum computing, but conventional Quantum Charge-Coupled Device (QCCD) architectures face severe wiring and power constraints as systems scale. The recently proposed WISE promise orders-of-magnitude reductions in wiring complexity but f...
Scott Jones, Songqinghao Yang, Prakash Murali· 0 citations
Neutral-atom arrays are a leading qubit technology for large-scale, fault-tolerant quantum computing (FTQC). A dominant error source on this platform is qubit loss, which accrues with every operation and movement. The presence of loss undermines the promises of existing architectural work. Standard error correction tar...
Sanaa Sharma, Yutaka Hirano, Akihisa Goban et al.· 0 citations
BOPS is presented, a generative model based on Schrodinger bridges, using a custom denoiser architecture, that learns a transformation from a source circuit into an equivalent optimized circuit, opening up the quantum compilation stack to learned optimization along multiple axes.
L. Hofstetter, Lia Yeh, Prakash Murali· 0 citations
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