A numerical optimization framework establishes lower bounds on quantum discord for specific Bell violations across six expressions under white noise and identifies two classes of optimized states.
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The authors prove existence of a unitary that maps a two-qubit state to one where a single observable expectation equals the initial concurrence and demonstrate a robust optimal control implementation via numerical simulations.
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Mapping correlations between quantum discord and Bell non-locality
A numerical optimization framework establishes lower bounds on quantum discord for specific Bell violations across six expressions under white noise and identifies two classes of optimized states.
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Existence of a robust optimal control process for efficient measurements in a two-qubit system
The authors prove existence of a unitary that maps a two-qubit state to one where a single observable expectation equals the initial concurrence and demonstrate a robust optimal control implementation via numerical simulations.