Phase Estimation With Interfering Bose-Condensed Atomic Clouds
arXiv:1007.0703 · doi:10.1103/PhysRevA.82.051601
Abstract
We investigate how to estimate from atom-position measurements the relative phase of two Bose-Einstein condensates released from a double-well potential. We demonstrate that the phase estimation sensitivity via the fit of the average density to the interference pattern is fundamentally bounded by shot noise. This bound can be overcome by estimating the phase from the measurement of (or higher) correlation function. The optimal estimation strategy requires the measurement of the -th order correlation function. We also demonstrate that a second estimation method -- based on the detection of the center of mass of the interference pattern -- provides sub shot-noise sensitivity. Yet, the implementation of both protocols might be experimentally challenging.
4 pages, 2 figures
References in corpus (10)
- Atom Interferometers
- Nonlinear atom interferometer surpasses classical precision limit
- Atom chip based generation of entanglement for quantum metrology
- Matter-wave interferometry in a double well on an atom chip
- Squeezing and entanglement in a Bose-Einstein condensate
- Long-lived Bloch oscillations with bosonic Sr atoms and application to gravity measurement at micrometer scale
- Control of Interaction-Induced Dephasing of Bloch Oscillations
- Atom interferometry with a weakly-interacting Bose Einstein condensate
- Combination of Bloch oscillations with a Ramsey-Bordé interferometer : new determination of the fine structure constant
- Bloch oscillations of ultracold atoms: a tool for a metrological determination of
Cited by in corpus (9)
- Quantum interferometry with and without an external phase reference
- Beyond quantum Fisher information: optimal phase estimation with arbitrary a priori knowledge
- Self-consistent many-body metrology
- Parameter estimation in a memory-assisted noisy quantum interferometry
- Sub shot-noise interferometry from measurements of the one-body density
- Matter-wave recombiners for trapped Bose-Einstein condensates
- Phase Estimation from Atom Position Measurements
- Parameter estimation by decoherence in the double-slit experiment
- High-precision estimation of the parameters in the reservoir via the two-level system