A modular two-qubit quantum circuit primitive is built to reproduce QCD gluon-splitting entanglement via concurrence, with parameters fitted to LHC data and validated on hardware for three-prong jets.
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Quantum complexity measures applied to the Schwinger model reveal nonlocal correlations along the string and show that entanglement and magic give complementary views of string formation and breaking.
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Physics inspired quantum algorithm for QCD splitting functions
A modular two-qubit quantum circuit primitive is built to reproduce QCD gluon-splitting entanglement via concurrence, with parameters fitted to LHC data and validated on hardware for three-prong jets.
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The Quantum Complexity of String Breaking in the Schwinger Model
Quantum complexity measures applied to the Schwinger model reveal nonlocal correlations along the string and show that entanglement and magic give complementary views of string formation and breaking.