Coherent control of non-Markovian photon-resonator dynamics
Anthony F. J. Levi, Lorenzo Campos Venuti, Tameem Albash, Stephan Haas

TL;DR
This paper demonstrates how coherent control pulses can manipulate non-Markovian photon-resonator dynamics, enabling precise control over transient quantum behaviors within dielectric resonator systems.
Contribution
It introduces a method to control non-Markovian photon dynamics using coherent pulses and spatial region selection, advancing quantum control techniques.
Findings
Non-Markovianity can be controlled within a photon-resonator transit time.
Coherent pulses enable creation and manipulation of transient dynamics.
Control is achieved through spatial and temporal parameter adjustments.
Abstract
We study the unitary time evolution of photons interacting with a dielectric resonator using coherent control pulses. We show that non-Markovianity of transient photon dynamics in the resonator subsystem may be controlled to within a photon-resonator transit time. In general, appropriate use of coherent pulses and choice of spatial subregion may be used to create and control a wide range of non-Markovian transient dynamics in photon resonator systems.
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