Molecular electronic decoherence can qualitatively reverse (suppress versus enhance) the effect of metal nanoparticles on molecular light absorption according to multiscale simulations.
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A quantum clock blueprint in dissipative spin chains achieves the optimal scaling at the precision-resolution bound with a robust repeated-operation protocol.
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Role of coherence in the plasmonic control of molecular absorption
Molecular electronic decoherence can qualitatively reverse (suppress versus enhance) the effect of metal nanoparticles on molecular light absorption according to multiscale simulations.
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Approaching the Limit of Quantum Clock Precision
A quantum clock blueprint in dissipative spin chains achieves the optimal scaling at the precision-resolution bound with a robust repeated-operation protocol.