arXiv · 2609.37643
All-optical switching in a trapped ion cavity QED system: a comparative study
Abstract
We investigate the transient dynamics of cavity-EIT-based all-optical switching in a system of trapped ions coupled to an optical cavity through numerical simulations. In contrast to steady-state analysis, the time-dependent response provides direct insight into the switching speed, transient dynamics, and achievable switching contrast. We consider three distinct switching schemes and systematically compare their performance as a function of the relevant system parameters. The switching contrast is evaluated from the time-dependent cavity output and used to characterize the performance of each scheme. For the four-level N-type system, we find distinct trade-offs between switching through suppression of the cavity-EIT signal and switching through resonance shifting, with the former exhibiting a faster temporal response. The corresponding three-level scheme can achieve near-unity switching contrast with substantially shorter switching pulses, although it does not provide an independent switching control field. These results establish the performance limits and trade-offs of different cavity-EIT-based switching schemes and provide guidelines for optimizing their operation for applications such as high-speed optical gating, frequency-selective photon routing, frequency-multiplexed quantum communication, etc.
Explore related subjects
Keep this discovery
Explore connections, maps & timelines
Abhijit Kundu, Vijay Bhatt, Arijit Sharma. 2026-09-29. All-optical switching in a trapped ion cavity QED system: a comparative study. https://arxiv.org/abs/2609.37643
Cite the original work for its findings. Save a collection to share your selection of sources.