English

Continuous Cold-atom Inertial Sensor with $1\ \text{nrad.s}^{-1}$ Rotation Stability

Atomic Physics 2016-05-10 v1 Instrumentation and Detectors

Abstract

We report the operation of a cold-atom inertial sensor which continuously captures the rotation signal. Using a joint interrogation scheme, where we simultaneously prepare a cold-atom source and operate an atom interferometer (AI) enables us to eliminate the dead times. We show that such continuous operation improves the short-term sensitivity of AIs, and demonstrate a rotation sensitivity of 100 nrad.s1.Hz1/2100\ \text{nrad.s}^{-1}.\text{Hz}^{-1/2} in a cold-atom gyroscope of 11 cm211 \ \text{cm}^2 Sagnac area. We also demonstrate a rotation stability of 1 nrad.s11 \ \text{nrad.s}^{-1} at 10410^4 s of integration time, which establishes the record for atomic gyroscopes. The continuous operation of cold-atom inertial sensors will enable to benefit from the full sensitivity potential of large area AIs, determined by the quantum noise limit.

Cite

@article{arxiv.1604.00940,
  title  = {Continuous Cold-atom Inertial Sensor with $1\ \text{nrad.s}^{-1}$ Rotation Stability},
  author = {I. Dutta and D. Savoie and B. Fang and B. Venon and C. L. Garrido Alzar and R. Geiger and A. Landragin},
  journal= {arXiv preprint arXiv:1604.00940},
  year   = {2016}
}

Comments

4 pages, 3 figures

R2 v1 2026-06-22T13:24:48.998Z