Kandel-Domany cluster dynamics with optimized long-range plaquette decompositions efficiently samples the frustrated Ising representation of two antiferromagnetically coupled Ohmic dissipative qubits.
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Normalized fidelity for single-photon transmission in atomic media decreases monotonically with coupling strength, establishing a performance bound for quantum communication across channel types and media.
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Efficient simulation of a pair of dissipative qubits antiferromagnetically coupled
Kandel-Domany cluster dynamics with optimized long-range plaquette decompositions efficiently samples the frustrated Ising representation of two antiferromagnetically coupled Ohmic dissipative qubits.
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One-photon communication in atomic media
Normalized fidelity for single-photon transmission in atomic media decreases monotonically with coupling strength, establishing a performance bound for quantum communication across channel types and media.