Density-matrix operatorial solution of the non-Markovian master equation for quantum Brownian motion
F. Intravaia, Sabrina Maniscalco, A. Messina
Abstract
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F. Intravaia, Sabrina Maniscalco, A. Messina
Abstract
Open-access reader
An original method to exactly solve the non-Markovian master equation describing the interaction of a single harmonic oscillator with a quantum environment in the weak-coupling limit is reported. By using a superoperatorial approach, we succeed in deriving the operatorial solution for the density matrix of the system. Our method is independent of the physical properties of the environment. We show the usefulness of our solution deriving explicit expressions for the dissipative time evolution of some observables of physical interest for the system, such as, for example, its mean energy.
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An original method to exactly solve the non-Markovian master equation describing the interaction of a single harmonic oscillator with a quantum environment in the weak-coupling limit is reported. By using a superoperatorial approach, we succeed in deriving the operatorial solution for the density matrix of the system. Our method is independent of the physical properties of the environment. We show the usefulness of our solution deriving explicit expressions for the dissipative time evolution of some observables of physical interest for the system, such as, for example, its mean energy.
Key concepts: Master equation, Dissipative system, Density matrix, Harmonic oscillator, Brownian motion, Observable, Matrix (chemical analysis), Quantum master equation