Semantic Scholar Open Access 2022 228 sitasi

Quantum sensing for gravity cartography

B. Stray A. Lamb A. Kaushik J. Vovrosh A. Rodgers +18 lainnya

Abstrak

The sensing of gravity has emerged as a tool in geophysics applications such as engineering and climate research1–3, including the monitoring of temporal variations in aquifers4 and geodesy5. However, it is impractical to use gravity cartography to resolve metre-scale underground features because of the long measurement times needed for the removal of vibrational noise6. Here we overcome this limitation by realizing a practical quantum gravity gradient sensor. Our design suppresses the effects of micro-seismic and laser noise, thermal and magnetic field variations, and instrument tilt. The instrument achieves a statistical uncertainty of 20 E (1 E = 10−9 s−2) and is used to perform a 0.5-metre-spatial-resolution survey across an 8.5-metre-long line, detecting a 2-metre tunnel with a signal-to-noise ratio of 8. Using a Bayesian inference method, we determine the centre to ±0.19 metres horizontally and the centre depth as (1.89 −0.59/+2.3) metres. The removal of vibrational noise enables improvements in instrument performance to directly translate into reduced measurement time in mapping. The sensor parameters are compatible with applications in mapping aquifers and evaluating impacts on the water table7, archaeology8–11, determination of soil properties12 and water content13, and reducing the risk of unforeseen ground conditions in the construction of critical energy, transport and utilities infrastructure14, providing a new window into the underground. A study reports a quantum gravity gradient sensor with a design that eliminates the need for long measurement times, and demonstrates the detection of an underground tunnel in an urban environment.

Topik & Kata Kunci

Penulis (23)

B

B. Stray

A

A. Lamb

A

A. Kaushik

J

J. Vovrosh

A

A. Rodgers

J

J. Winch

F

F. Hayati

D

D. Boddice

A

A. Stabrawa

A

A. Niggebaum

M

M. Langlois

Y

Y. Lien

S

S. Lellouch

S

Sanaz Roshanmanesh

K

K. Ridley

G

G. D. de Villiers

G

G. Brown

T

T. Cross

G

G. Tuckwell

A

A. Faramarzi

N

N. Metje

K

K. Bongs

M

M. Holynski

Format Sitasi

Stray, B., Lamb, A., Kaushik, A., Vovrosh, J., Rodgers, A., Winch, J. et al. (2022). Quantum sensing for gravity cartography. https://doi.org/10.1038/s41586-021-04315-3

Akses Cepat

Lihat di Sumber doi.org/10.1038/s41586-021-04315-3
Informasi Jurnal
Tahun Terbit
2022
Bahasa
en
Total Sitasi
228×
Sumber Database
Semantic Scholar
DOI
10.1038/s41586-021-04315-3
Akses
Open Access ✓