DocumentCode
3191087
Title
Entanglement and quantum memory with atomic ensembles
Author
Polzik, Eugene ; Julsgaard, Brian ; Sorensen, Jens ; Schori, Christian
Author_Institution
Inst. of Phys. & Astron., Aarhus Univ., Denmark
fYear
2003
fDate
22-27 June 2003
Firstpage
396
Abstract
Summary form only given. A new approach to the problem of the quantum interface between light and atoms has been recently developed. The method utilizes free space dispersive interaction between pulses of light and spin polarized atomic ensembles. Entanglement between the polarization state of light and the collective spin state of atoms is established by measurement, more precisely by detection of light in a certain polarization basis. In the first demonstration of this approach we have generated a long-lived entangled state of two separate macroscopic atomic samples by a polarization measurement on light transmitted through the samples. We then have shown that this approach also works for mapping of a quantum state of light onto long-lived atomic spin state paving the road towards realization of the quantum memory for light. Recently we have also extended the free space light-atoms interface beyond the continuous variables in the proposal, where a coherent superposition "cat" state of an atomic ensemble is generated by a measurement sequence. Progress with other communication protocols such as atomic state teleportation and multiparty networks will be presented.
Keywords
atom-photon collisions; light polarisation; quantum communication; quantum entanglement; teleportation; atomic ensembles; atomic state teleportation; coherent superposition cat state; collective spin state; communication protocols; entanglement; free space dispersive interaction; free space light-atoms interface; light-atom quantum interface; long-lived entangled state; polarization light state; quantum memory; spin polarized atomic ensembles; Astronomy; Atom optics; Atomic measurements; Dispersion; Extraterrestrial measurements; Optical polarization; Optical pulses; Physics; Quantum entanglement; Roads;
fLanguage
English
Publisher
ieee
Conference_Titel
Quantum Electronics Conference, 2003. EQEC '03. European
Print_ISBN
0-7803-7733-8
Type
conf
DOI
10.1109/EQEC.2003.1314253
Filename
1314253
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