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20242026
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physics.atom-ph2026

Trap-Quenched Matter-Wave Optics in Space

Gabriel Müller, Timothé Estrampes, Claudia Puertas González +12

Dual-species atomic sources in space promise to be the testbed for a multitude of searches in quantum gas physics such as a precise test of the Universality of Free Fall (UFF), few…

physics.atom-ph2026

A tunable feedback-controlled magnetic trap for a magnet in free fall

Changhao Xu, Alexander Heidt, Mohammadreza Nematollahi +5

Ferromagnets in free space are predicted to exhibit pure Larmor precession at near-zero magnetic fields and provide exceptional sensitivity for magnetometry and gyroscopy. Notably,…

physics.atom-ph2025

Space magnetometry with a differential atom interferometer

Matthias Meister, Gabriel Müller, Patrick Boegel +16

Atom interferometers deployed in space are excellent tools for high precision measurements, navigation, or Earth observation. In particular, differential interferometric setups fea…

physics.atom-ph2025

Dark Energy Search by Atom Interferometry in the Einstein-Elevator

Charles Garcion, Sukhjovan S. Gill, Magdalena Misslisch +13

The DESIRE project aims to test chameleon field theories as potential candidates for dark energy. The chameleon field is a light scalar field that is subject to screening mechanism…

physics.atom-ph2025

Multi-axis inertial sensing with 2D matter-wave arrays

K. Stolzenberg, C. Struckmann, S. Bode +8

Atom interferometery is an exquisite measurement technique sensitive to inertial forces. However, it is commonly limited to a single sensitive axis, allowing high-precision multi-d…