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Superconducting Qubits
A phase microscope for quantum gases.
PubMed
Authors: Brüggenjürgen JC, Fischer MS, Weitenberg C
Year
2026
Paper ID
72070
Status
Peer-reviewed
Abstract Read
~2 min
Abstract Words
113
Citations
N/A
Abstract
Coherence properties are central to quantum systems and are at the heart of phenomena such as superconductivity. In this work, we studied coherence properties of an ultracold Bose gas in a two-dimensional optical lattice across the thermal phase transition. To infer the phase coherence and phase fluctuation profiles, we used direct matter-wave imaging of higher Talbot revivals and introduced a phase microscope based on a site-resolved mapping of phase fluctuations to density fluctuations during matter-wave imaging. We observed the algebraic decay of the phase correlations in the superfluid phase and a linear temperature increase of the exponent. These techniques may enable studying coherence properties in strongly correlated quantum systems with full spatial resolution.
Why This Paper Matters
- This paper contributes to the Superconducting Qubits research area in the Quantum Articles archive.
- It adds a 2026 reference point for readers tracking recent quantum research.
- Coherence properties are central to quantum systems and are at the heart of phenomena such as superconductivity.
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