Experimental proof of Quantum Zeno-assisted Noise Sensing
Abstract
In the ideal quantum Zeno effect, repeated quantum projective measurements can freeze the coherent dynamics of a quantum system. However, in the weak quantum Zeno regime, measurement back-actions can allow the sensing of semi-classical field fluctuations. In this regard, we theoretically show how to combine the controlled manipulation of a quantum two-level system, used as a probe, with a sequence of projective measurements to have direct access to the noise correlation function. We experimentally test the effectiveness of the proposed noise sensing method on a properly engineered Bose-Einstein condensate of atoms realized on an atom chip. We believe that our quantum Zeno-based approach can open a new path towards novel quantum sensing devices.
Keywords
Cite
@article{arxiv.1907.09618,
title = {Experimental proof of Quantum Zeno-assisted Noise Sensing},
author = {Hoang-Van Do and Cosimo Lovecchio and Ivana Mastroserio and Nicole Fabbri and Francesco S. Cataliotti and Stefano Gherardini and Matthias M. Müller and Nicola Dalla Pozza and Filippo Caruso},
journal= {arXiv preprint arXiv:1907.09618},
year = {2019}
}
Comments
19 pages, 8 figures; v2: close to the published version