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- W4385666917 abstract "Understanding the computational overheads imposed by classical control systems on quantum computing platforms becomes critically important as these quantum machines grow in scale and complexity. In this work, we calculate the overheads imposed by the implementation of real-time graph traversal algorithms needed to find computational paths through incomplete cluster states for the implementation of one-qubit gates; a necessary requirement for a realistic implementation of photonic measurement-based quantum computing. By implementing two different algorithms, a global breadth-first search that searches the entire cluster state and an incremental version that traverses a narrow subsection of the cluster state, we analyze the trade-off between the accuracy of finding viable paths and the speed at which this operation can be performed, which constrains the overall photonic clock cycle of the system. We also outline the broader implications of our results for implementing classical control systems for measurement-based photonic quantum computing." @default.
- W4385666917 created "2023-08-09" @default.
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- W4385666917 date "2023-08-08" @default.
- W4385666917 modified "2023-09-22" @default.
- W4385666917 title "Timing Constraints Due to Real-Time Graph-Traversal Algorithms on Incomplete Cluster States in Photonic Measurement-Based Quantum Computing" @default.
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- W4385666917 doi "https://doi.org/10.1103/physrevapplied.20.024019" @default.
- W4385666917 hasPublicationYear "2023" @default.
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