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quant-ph2025

Unified laboratory-frame analysis of atomic gravitational-wave sensors

Simon Schaffrath, Daniel Störk, Fabio Di Pumpo +1

Atomic sensors using light-matter interactions, in particular atomic clocks and atom interferometers, have the potential to complement optical gravitational-wave detectors in the m…

quant-ph2025

Spatial and Pulse Efficiency Constraints in Atom Interferometric Gravitational Wave Detectors

Patrik Schach, Enno Giese

Currently planned and constructed terrestrial detectors for gravitational waves and dark matter based on differential light-pulse atom interferometry are designed around three prim…

quant-ph2025

Sensing Birefringence and Diattenuation with Undetected Light

Cristofero Oglialoro, Enno Giese

Developing advanced technologies for sensing and imaging biological samples is crucial for medical applications, making quantum-enhanced methods particularly valuable, as they prom…

quant-ph2025

Finite-Speed-of-Light Effects in Atom Interferometry: Diffraction Mechanisms and Resonance Conditions

Christian Niehof, Daniel Derr, Enno Giese

Light-pulse atom interferometers serve as tools for high-precision metrology and are targeting measurements of relativistic effects. This development is facilitated by extended int…

quant-ph2025

Dichroic mirror pulses for optimized higher-order atomic Bragg diffraction

Dominik Pfeiffer, Maximilian Dietrich, Patrik Schach +2

Increasing the sensitivity of light-pulse atom interferometers progressively relies on large-momentum transfer techniques. Precise control of such methods is imperative to exploit…

quant-ph2025

Conservation of angular momentum on a single-photon level

Lea Kopf, Rafael Barros, Shashi Prabhakar +2

Identifying conservation laws is central to every subfield of physics, as they illuminate the underlying symmetries and fundamental principles. A prime example can be found in quan…