Toward Heisenberg-Limited Spectroscopy with Multiparticle Entangled States

Author:

Leibfried D.1,Barrett M. D.1,Schaetz T.1,Britton J.1,Chiaverini J.1,Itano W. M.1,Jost J. D.1,Langer C.1,Wineland D. J.1

Affiliation:

1. National Institute of Standards and Technology, 325 Broadway, Boulder, CO 80305, USA.

Abstract

The precision in spectroscopy of any quantum system is fundamentally limited by the Heisenberg uncertainty relation for energy and time. For N systems, this limit requires that they be in a quantum-mechanically entangled state. We describe a scalable method of spectroscopy that can potentially take full advantage of entanglement to reach the Heisenberg limit and has the practical advantage that the spectroscopic information is transferred to states with optimal protection against readout noise. We demonstrate our method experimentally with three beryllium ions. The spectroscopic sensitivity attained is 1.45(2) times as high as that of a perfect experiment with three non-entangled particles.

Publisher

American Association for the Advancement of Science (AAAS)

Subject

Multidisciplinary

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