English

A compact differential gravimeter at the quantum projection noise limit

Atomic Physics 2022-02-16 v1

Abstract

Atom interferometry offers new perspectives for geophysics and inertial sensing. We present the industrial prototype of a new type of quantum-based instrument: a compact, transportable, differential quantum gravimeter capable of measuring simultaneously the absolute values of both gravitational acceleration, gg, and its vertical gradient, Γzz\Gamma_{zz}. While the sensitivity to g is competitive with the best industrial gravimeters, the sensitivity on Γzz\Gamma_{zz} reaches the limit set by quantum projection noise-leading to an unprecedented long-term stability of 0.1 E (1E=1×109s21E=1\times 10^{-9}s^{-2}). This unique, dual-purpose instrument, paves the way for new applications in geophysics, civil engineering, and gravity-aided navigation, where accurate mapping of the gravitational field plays an important role.

Keywords

Cite

@article{arxiv.2201.03345,
  title  = {A compact differential gravimeter at the quantum projection noise limit},
  author = {Camille Janvier and Vincent Ménoret and Sébastien Merlet and Arnaud Landragin and Franck Pereira Dos Santos and Bruno Desruelle},
  journal= {arXiv preprint arXiv:2201.03345},
  year   = {2022}
}
R2 v1 2026-06-24T08:44:53.845Z