Quantum speed limit time of a two-level atom under different quantum feedback control
At a glance
- Citations
- 10
- References
- 30
- Comments
- 0
Abstract
We investigate the quantum speed limit time (QSLT) of a two-level atom under quantum-jump-based feedback control or homodyne-based feedback control. Our results show that the two different feedback control schemes have different influences on the evolutionary speed. By adjusting the feedback parameters, the quantum-jump-based feedback control can induce speedup of the atomic evolution from an excited state, but the homodyne-based feedback control cannot change the evolutionary speed. Additionally, the QSLT for the whole dynamical process is explored. Under the quantum-jump-based feedback control, the QSLT displays oscillatory behaviors, which implies multiple speed-up and speed-down processes during the evolution. While, the homodyne-based feedback control can accelerate the speed-up process and improve the uniform speed in the uniform evolution process.
Publication details
- DOI
- 10.1088/1674-1056/27/1/010303
- OpenAlex
- W2789494119
- Document type
- article
- Language
- EN
- Source
- Chinese Physics B
- Last metadata update
Comments
Log in to join the discussion.