Manipulation and storage of optical field and atomic ensemble quantum states

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We study how to efficiently manipulate and store quantum information between optical fields and atomic ensembles. We show how various non-dissipative transfer schemes can be used to transfer and store quantum states such as squeezed vacuum states or entangled states into the long-lived ground state spins of atomic ensembles.
Contribution to Laser Physics special issue in honor of pr Herbert Walther 70's birthday

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