Authors
Kristin M Beck, Mahdi Hosseini, Yiheng Duan, Vladan Vuletić
Publication date
2016/8/30
Journal
Proceedings of the National Academy of Sciences
Volume
113
Issue
35
Pages
9740-9744
Publisher
National Academy of Sciences
Description
Deterministic optical quantum logic requires a nonlinear quantum process that alters the phase of a quantum optical state by π through interaction with only one photon. Here, we demonstrate a large conditional cross-phase modulation between a signal field, stored inside an atomic quantum memory, and a control photon that traverses a high-finesse optical cavity containing the atomic memory. This approach avoids fundamental limitations associated with multimode effects for traveling optical photons. We measure a conditional cross-phase shift of (and up to by postselection on photons that remain in the system longer than average) between the retrieved signal and control photons, and confirm deterministic entanglement between the signal and control modes by extracting a positive concurrence. By upgrading to a state-of-the-art cavity, our system can reach a coherent phase shift of π at low loss, enabling …
Total citations
2016201720182019202020212022202320241516101214101863
Scholar articles
KM Beck, M Hosseini, Y Duan, V Vuletić - Proceedings of the National Academy of Sciences, 2016