Quantum speed limit of a photon under non-Markovian dynamics
arXiv:1309.1391 · doi:10.1088/0256-307X/31/2/020301
Abstract
Quantum speed limit (QSL) under noise has drawn considerable attention in real quantum computational processes and quantum communication. Though non-Markovian noise is proven to be able to accelerate quantum evolution for a damped Jaynes-Cummings model, in this work we show that non-Markovianity may even slow down the quantum evolution of an experimentally controllable photon system. As an important application, QSL time of a photon can be well controlled by regulating the relevant environment parameter properly, which is close to reach the currently available photonic experimental technology.
5 pages, 2 figures
References in corpus (10)
- Experimental demonstration of quantum memory for light
- Quantum speed limit for physical processes
- Quantum speed limit for non-Markovian dynamics
- Quantum speed limits in open system dynamics
- On measures of non-Markovianity: divisibility vs. backflow of information
- Geometric derivation of the quantum speed limit
- Quantum Speed Limit for Perfect State Transfer in One Dimension
- Kraus representation of quantum evolution and fidelity as manifestations of Markovian and non-Markovian avataras
- Comment on "Geometric derivation of the quantum speed limit"
- Probing the degree of non-Markovianity for independent and common environments
Cited by in corpus (14)
- Trade-off between speed and cost in shortcuts to adiabaticity
- Environment assisted speed-up of the field evolution in cavity QED
- Quantum Coherence Sets The Quantum Speed Limit For Mixed States
- Quantum-speed-limit time for multiqubit open systems
- Optimal control of a qubit in an optical cavity
- Role of non-Markovianity and backflow of information in the speed of quantum evolution
- Hierarchical environment-assisted dynamical speedup control
- Experimental Investigation of Geometric Quantum Speed Limits in an Open Quantum System
- Margolus-Levitin speed limit across quantum to classical regimes based on trace distance
- The effect of Homodyne-based feedback control on quantum speed limit time
- Quantum dynamical speedup for correlated initial states
- Tight bounds of quantum speed limit for noisy dynamics via maximum rotation angles
- Thermal Quantum Speed Limit for Classical-Driving Open Systems
- Control cost and quantum speed limit time in controlled almost exact state transmission in open systems