Quantum stochastic synchronization

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Abstract

We study, within the spin-boson dynamics, the synchronization of a quantum tunneling system with an external, time-periodic driving signal. As a main result, we find that at a sufficiently large system-bath coupling strength (i.e., for a friction strength α>1) the thermal noise plays a constructive role in yielding forced synchronization. This noise-induced synchronization can occur when the driving frequency is larger than the zero-temperature tunneling rate. As an application evidencing the effect, we consider the charge transfer dynamics in molecular complexes. © 2006 The American Physical Society.

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Goychuk, I., Casado-Pascual, J., Morillo, M., Lehmann, J., & Hänggi, P. (2006). Quantum stochastic synchronization. Physical Review Letters, 97(21). https://doi.org/10.1103/PhysRevLett.97.210601

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