We study the ultimate bounds on the sensitivity of a Bloch-oscillation atom interferometer where the external force is estimated from the measurement of the on-site atomic density. For external forces such that the energy difference between lattice sites is smaller than the tunneling energy, the atomic wave function spreads over many lattice sites, increasing the separation between the occupied modes of the lattice and naturally enhancing the sensitivity of the interferometer. To investigate the applicability of this scheme we estimate the effect of uncontrolled fluctuations of the tunneling energy and the finite resolution of the atom detection. Our analysis shows that a horizontal lattice combined with a weak external force allow for high sensitivities. Therefore, this setup is a promising solution for compact devices or for measurements with high spatial resolution.

Sensitivity bounds of a spatial Bloch-oscillation atom interferometer / Nalecz, I; Masi, L; Ferioli, G; Petrucciani, T; Fattori, M; Chwedenczuk, J. - In: PHYSICAL REVIEW A. - ISSN 2469-9926. - ELETTRONICO. - 102:(2020), pp. 0-0. [10.1103/PhysRevA.102.033318]

Sensitivity bounds of a spatial Bloch-oscillation atom interferometer

Masi, L;Ferioli, G;Petrucciani, T;Fattori, M;
2020

Abstract

We study the ultimate bounds on the sensitivity of a Bloch-oscillation atom interferometer where the external force is estimated from the measurement of the on-site atomic density. For external forces such that the energy difference between lattice sites is smaller than the tunneling energy, the atomic wave function spreads over many lattice sites, increasing the separation between the occupied modes of the lattice and naturally enhancing the sensitivity of the interferometer. To investigate the applicability of this scheme we estimate the effect of uncontrolled fluctuations of the tunneling energy and the finite resolution of the atom detection. Our analysis shows that a horizontal lattice combined with a weak external force allow for high sensitivities. Therefore, this setup is a promising solution for compact devices or for measurements with high spatial resolution.
2020
102
0
0
Nalecz, I; Masi, L; Ferioli, G; Petrucciani, T; Fattori, M; Chwedenczuk, J
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Utilizza questo identificatore per citare o creare un link a questa risorsa: https://hdl.handle.net/2158/1302925
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