Unfolding Correlation from Open-Quantum-System Master Equations.
ORAL
Abstract
Understanding system-bath correlations in open quantum systems is essential for various quantum information and technology applications. Derivations of most master equations (MEs) for the dynamics of open systems require approximations that mask dependence of the system dynamics on correlations since the MEs focus on reduced system dynamics. Here we demonstrate that the most common MEs indeed contain hidden information about explicit system-environment correlation. We unfold these correlations by recasting the MEs into a universal form in which the system-bath correlation operator appears. The equations include the Lindblad, Redfield, second-order time-convolutionless, second-order Nakajima-Zwanzig, and second-order universal Lindblad-like cases. We further illustrate our results in an example, which implies that the second-order universal Lindblad-like equation captures correlation more accurately than other standard techniques.
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Publication: A. P. Babu, S. Alipour, A. T. Rezakhani, T. Ala-Nissila. Unfolding<br>Correlation from Open-Quantum-System Master Equations. arXiv:2104.04248.
Presenters
Aravind Plathanam Babu
QTF Center of Excellence, Aalto University. Nano and Molecular Systems Research Unit, University of Oulu.
Authors
Aravind Plathanam Babu
QTF Center of Excellence, Aalto University. Nano and Molecular Systems Research Unit, University of Oulu.
Sahar Alipour
QTF Center of Excellence, Aalto University.
Ali T Rezakhani
Department of Physics, Sharif University of Technology and School of Physics, Institute for Research in Fundamental Sciences (IPM).
Tapio Ala-Nissila
Aalto University, QTF Center of Excellence, Aalto University and Department of Mathematical Sciences, Loughborough University., MSP Group, Aalto University