Quantum dynamics of incoherently driven V-type system: Analytic solutions beyond the secular approximation
Amro Dodin, Timur V. Tscherbul, and Paul Brumer

TL;DR
This paper derives exact solutions for the quantum dynamics of a V-type system driven by incoherent noise, revealing how noise-induced coherences evolve and depend on system parameters, with implications for quantum control.
Contribution
It provides the first closed-form analytic solutions to non-secular Bloch-Redfield equations for incoherently driven V-systems, extending understanding beyond the secular approximation.
Findings
Coherences oscillate or stabilize depending on damping parameter
Long-lived superpositions enhance decay rates
Maximized coherences occur with equal pumping and aligned dipoles
Abstract
We present closed-form analytic solutions to non-secular Bloch-Redfield master equations for quantum dynamics of a V-type system driven by weak coupling to a thermal bath. We focus on noise-induced Fano coherences among the excited states induced by incoherent driving of the V-system initially in the ground state. For suddenly turned-on incoherent driving, the time evolution of the coherences is determined by the damping parameter , where are the radiative decay rates of the excited levels , and depends on the excited-state level splitting and the angle between the transition dipole moments in the energy basis. The coherences oscillate as a function of time in the underdamped limit (), approach a long-lived quasi-steady state in the overdamped limit…
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