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20242026
most citedHigh-contrast double Bragg interferometry via detuning control

2 citations · 2 across the 10 of their papers we have counts for

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quant-ph2025

Realization of an all-optical effective negative-mass oscillator for coherent quantum noise cancellation

Nived Johny, Jonas Junker, Bernd Schulte +3

We report the realization of an all-optical, tabletop effective-negative-mass oscillator (ENMO) scheme capable of canceling quantum noise when cascaded with an opto-mechanical sens…

quant-ph2025

Emergence of unidirectionality and phase separation in optically dense emitter ensembles

Kasper J. Kusmierek, Max Schemmer, Sahand Mahmoodian +1

The transmission of light through an ensemble of two-level emitters in a one-dimensional geometry is commonly described by one of two emblematic models of quantum electrodynamics (…

quant-ph2025

Non-local mass superpositions and optical clock interferometry in atomic ensemble quantum networks

Charles Fromonteil, Denis V. Vasilyev, Torsten V. Zache +5

Quantum networks are emerging as powerful platforms for sensing, communication, and fundamental tests of physics. We propose a programmable quantum sensing network based on entangl…

physics.atom-ph2025

Entanglement-enhanced optical ion clock

Kai Dietze, Lennart Pelzer, Ludwig Krinner +11

Entangled states hold the promise of improving the precision and accuracy of quantum sensors. We experimentally demonstrate that spectroscopy of an optical clock transition using e…

quant-ph2025

Bayesian Frequency Metrology with Optimal Ramsey Interferometry in Optical Atomic Clocks

Timm Kielinski, Klemens Hammerer

Frequency metrology is a cornerstone of modern precision measurements and optical atomic clocks have emerged as the most precise measurement devices. In this progress report, we ex…

quant-ph2025

Exploring the dynamical interplay between mass-energy equivalence, interactions and entanglement in an optical lattice clock

Anjun Chu, Victor J. Martínez-Lahuerta, Maya Miklos +5

We propose protocols that probe manifestations of the mass-energy equivalence in an optical lattice clock (OLC) interrogated with spin coherent and entangled quantum states. To tun…