activity
20192022
most citedUnderstanding the gravitational and magnetic environment of a very long baseline atom interferometer

1 citations · 1 across the 1 of their papers we have counts for

collaborators

5 papers

physics.atom-ph20221 cited

Understanding the gravitational and magnetic environment of a very long baseline atom interferometer

Ali Lezeik, Dorothee Tell, Klaus Zipfel +5

By utilizing the quadratic dependency of the interferometry phase on time, the Hannover Very Long Baseline Atom Interferometer facility (VLBAI) aims for sub nm/s gravity measur…

physics.ins-det2020

Gravity field modelling for the Hannover 10m atom interferometer

Manuel Schilling, Étienne Wodey, Ludger Timmen +6

Absolute gravimeters (AG) are used in geodesy, geophysics, and physics for a wide spectrum of applications. Stable gravimetric measurements over timescales from several days to dec…

physics.ins-det2019

A scalable high-performance magnetic shield for Very Long Baseline Atom Interferometry

E. Wodey, D. Tell, E. M. Rasel +11

We report on the design, construction, and characterization of a 10 m-long high-performance magnetic shield for Very Long Baseline Atom Interferometry (VLBAI). We achieve residual…

physics.atom-ph2019

Matter Wave Interferometry for Inertial Sensing and Tests of Fundamental Physics

D. Schlippert, C. Meiners, R. J. Rengelink +6

Very Long Baseline Atom Interferometry (VLBAI) corresponds to ground-based atomic matter-wave interferometry on large scales in space and time, letting the atomic wave functions in…

physics.optics2019

Optomechanical resonator-enhanced atom interferometry

L. L. Richardson, D. Nath, A. Rajagopalan +16

Matter-wave interferometry and spectroscopy of optomechanical resonators offer complementary advantages. Interferometry with cold atoms is employed for accurate and long-term stabl…