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Qompose: A Technique to Select Optimal Algorithm- Specific Layout for Neutral Atom Quantum Architectures
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As quantum computing architecture matures, it is important to investigate new technologies that lend unique advantages. In this work, we propose, Qompose, a neutral atom quantum computing framework for efficiently composing quantum circuits on 2-D topologies of neutral atoms. Qompose selects an efficient topology for any given circuit in order to optimize for length of execution through efficient parallelism and for overall fidelity. our extensive evaluation demonstrates the Qompose is effective for a large collection of randomly-generated quantum circuits and a range of real-world benchmarks including VQE, ISING, and QAOA.
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Cited by 2 Pith papers
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Guiding Compiler Optimizations for Neutral Atom Quantum Computers Through Visualizations
NAViz, the first open-source real-time visualization app for neutral atom quantum computers, exposed inefficient routing detours and led to a hybrid routing strategy that outperforms strict and relaxed baselines on mo...
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Enabling Neutral Atom Integration: Redesigning Device Models for Universal Quantum Ecosystems
A device model extension that captures neutral-atom-specific features (coordinates, interaction radii, shuttling, zoned sites) enables specialized NA compilers to integrate with universal quantum ecosystems, demonstra...
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