arXiv · 0801.1941
Active Quantum Memory Using Oscillating Dark States
Abstract
An active method for long time storage of quantum superposition state in atomic system using the Oscillating Dark States (ODS) is presented. Quantum state of a three-level $Λ$ configuration atomic system oscillates periodically between two ground levels, when two pairs of classical detuning laser fields driving the system into the ODS under evolving adiabatic conditions. When considering another uploading/unloading adiabatic conditions and applying the oscillation of the ODS to quantum state storage, surprisingly, we can obtain the greatly suppressed decoherence of the system and high fidelity of the retrieved state, even if decay factor of coherence term of the system density matrix $γ_{21}$$\cdot$ $t$$ \gg$1. The storage time is not limited by coherence decay time of the atomic system any longer, and can be thousands of times longer than that in those passive schemes without additional laser fields.
Explore related subjects
Keep this discovery
Jun He, Yong-Sheng Zhang, Xiang-Fa Zhou, Qun-Feng Chen, Guang-Can Guo. 2008-01-25. Active Quantum Memory Using Oscillating Dark States. https://arxiv.org/abs/0801.1941
Cite the original work for its findings. Save a collection to share your selection of sources.