Quantum Non-Markovian Processes Break Conditional Past-Future Independence
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American Physical Society
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For classical Markovian stochastic systems, past and future events become statistically independent when conditioned to a given state at the present time. Memory non-Markovian effects break this condition, inducing a nonvanishing conditional past-future correlation. Here, this classical memory indicator is extended to a quantum regime, which provides an operational definition of quantum non-Markovianity based on a minimal set of three time-ordered quantum system measurements and postselection. The detection of memory effects through the measurement scheme is univocally related to departures from Born-Markov and white noise approximations in quantum and classical environments, respectively.
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Open quantum systems, Quantum Non-Markovianity, Otras Ciencias Físicas, Ciencias Físicas, CIENCIAS NATURALES Y EXACTAS
