Finite quantum batteries in geometric Landau-Zener interferometry produce sector-resolved evolution, contrast loss, and back-action that benchmark phase-coherent energy delivery.
Zener, Non-adiabatic crossing of energy levels, Pro- ceedings of the Royal Society of London
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Tiny PT-symmetric non-Hermitian terms added to two XX-coupled qubits increase the success probability of reaching the ground state in quantum annealing.
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Quantum-Battery-Powered Geometric Landau-Zener Interferometry
Finite quantum batteries in geometric Landau-Zener interferometry produce sector-resolved evolution, contrast loss, and back-action that benchmark phase-coherent energy delivery.
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Quantum dynamics of two $XX$ interacting PT-symmetric non-Hermitian qubits: enhancement of quantum annealing
Tiny PT-symmetric non-Hermitian terms added to two XX-coupled qubits increase the success probability of reaching the ground state in quantum annealing.