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9 papers

cond-mat.quant-gas2026

A phase microscope for quantum gases

Justus C. Brüggenjürgen, Mathis S. Fischer, Christof Weitenberg

The paper introduces a phase microscope technique that uses matter-wave imaging to map phase fluctuations to density fluctuations, enabling spatially resolved study of coherence in…

cond-mat.quant-gas2026

Phase-space microscopes for quantum gases: Imaging conjugate variables and momentum-weighted densities

N. R. Cooper, Y. Yang, C. Weitenberg

Quantum gas microscopes offer unprecedented insights into quantum many-body states of cold atomic gases. Here we introduce concrete protocols for extending quantum gas microscopes…

cond-mat.quant-gas2026

Adiabatic realization of anomalous Floquet topological systems

Luca Asteria, Marcel N. Kosch, Henrik P. Zahn +4

Topology has emerged as a central concept for classifying phases of matter. The situation is especially rich in periodically driven systems, where anomalous Floquet topological pha…

cond-mat.quant-gas2026

Adiabatic preparation of a fractional quantum Hall fluid by coherently pumping atoms from a Bose-Einstein condensate

Alberto Tabarelli de Fatis, Christof Weitenberg, Alexander Schnell +2

We propose a protocol to adiabatically prepare a many-particle fractional quantum Hall fluid of bosonic ultracold atoms exploiting a time-dependent coherent coupling of a strongly…

cond-mat.mes-hall2026

Micromotion area as proxy for anomalous Floquet topological systems

Luca Asteria, Klaus Sengstock, André Eckardt +1

Driven Floquet systems can realize topological phases with no static counterparts. These so-called anomalous Floquet topology breaks the bulk-boundary correspondence based on the C…

cond-mat.quant-gas2026

Protocols for a many-body phase microscope: From coherences and d-wave superconductivity to Green's functions

Christof Weitenberg, Luca Asteria, Ola Carlsson +2

Quantum gas microscopes probe quantum many-body lattice states via projective measurements in the occupation basis, enabling access to various density and spin correlations. Phase…