F. Toscano

Quantum metrology at the Heisenberg limit with ion traps

D. A. R. Dalvit, R. L. de Matos Filho [2], F. Toscano [3,2]

Abstract

Sub-Planck phase-space structures in the Wigner function of the motional degree of freedom of a trapped ion can be used to perform weak force measurements with Heisenberg-limited sensitivity. We propose methods to engineer the Hamiltonian of the trapped ion to generate states with such small scale structures, and we show how to use them in quantum metrology applications.

Sub-Planck phase-space structures and Heisenberg-limited measurements

F. Toscano [1,2], D. A. R. Dalvit, L. Davidovich [1,2], W. H. Zurek

Abstract

We show how sub-Planck phase-space structures in the Wigner function can be used to achieve Heisenberg-limited sensitivity in weak force measurements. Nonclassical states of harmonic oscillators, consisting of superpositions of coherent states, are shown to be useful for the measurement of weak forces that cause translations or rotations in phase space, which is done by entangling the quantum oscillator with a two-level system. Implementations of this strategy in cavity QED and ion traps are described.