Real spheres are quantumly n-colorable precisely for n=2 or multiples of 4 with Hadamard matrices; complex spheres have quantum chromatic number strictly larger than dimension except for n=2, settling the Zeng-Zhang conjecture on rank-one colorings.
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2 Pith papers cite this work. Polarity classification is still indexing.
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quant-ph 2years
2026 2verdicts
UNVERDICTED 2representative citing papers
A framework for partially-blind single-qubit classification (PB-SQC) is proposed and simulated on a credit-card fraud dataset using realistic hardware parameters in a heterogeneous quantum network, with performance approaching a classical deep-belief network.
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Quantum Colorings of Spheres
Real spheres are quantumly n-colorable precisely for n=2 or multiples of 4 with Hadamard matrices; complex spheres have quantum chromatic number strictly larger than dimension except for n=2, settling the Zeng-Zhang conjecture on rank-one colorings.
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Partially-Blind Single-Qubit Classification over a Prototype Hybrid Quantum Network
A framework for partially-blind single-qubit classification (PB-SQC) is proposed and simulated on a credit-card fraud dataset using realistic hardware parameters in a heterogeneous quantum network, with performance approaching a classical deep-belief network.