activity
20092013
most citedHighly multimode memory in a crystal

140 citations · 192 across the 3 of their papers we have counts for

collaborators

7 papers

quant-ph2013★ 31 cited

Photon echo with a few photons in two-level atoms

M. Bonarota, J. Dajczgewand, A. Louchet-Chauvet +2

To store and retrieve signals at the single photon level, various photon echo schemes have resorted to complex preparation steps involving ancillary shelving states in multi-level…

quant-ph2012★ 21 cited

Atomic Frequency Comb storage as a slow-light effect

M. Bonarota, J. -L. Le Gouët, S. A. Moiseev +1

Atomic Frequency Comb (AFC) protocol has been particularly successful recently to demonstrate the storage of quantum information in a solid medium (rare-earth doped crystals). The…

quant-ph2011

Revival of Silenced Echo and Quantum Memory for Light

V. Damon, M. Bonarota, A. Louchet-Chauvet +2

We propose an original quantum memory protocol. It belongs to the class of rephasing processes and is closely related to two-pulse photon echo. It is known that the strong populati…

quant-ph2010★ 140 cited

Highly multimode memory in a crystal

M. Bonarota, J. -L. Le Gouët, T. Chanelière

We experimentally demonstrate the storage of 1060 temporal modes onto a thulium-doped crystal using an atomic frequency comb (AFC). The comb covers 0.93 GHz defining the storage ba…

quant-ph2009

Efficiency optimization for Atomic Frequency Comb storage

M. Bonarota, J. Ruggiero, J. -L. Le Gouët +1

We study the efficiency of the Atomic Frequency Comb storage protocol. We show that for a given optical depth, the preparation procedure can be optimize to significantly improve th…

quant-ph2009

Light storage protocols in Tm:YAG

T. Chanelière, R. Lauro, J. Ruggiero +1

We present two quantum memory protocols for solids: A stopped light approach based on spectral hole burning and the storage in an atomic frequency comb. These procedures are well a…