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Local control and mixed dimensions: Exploring high-temperature superconductivity in optical lattices
arXiv (2024)
The simulation of high-temperature superconducting materials by implementing strongly correlated fermionic models in optical lattices …
Optical superlattice for engineering Hubbard couplings in quantum simulation
arXiv (2024)
Quantum simulations of Hubbard models with ultracold atoms rely on the exceptional control of coherent motion provided by optical …
Simple tunable phase-locked lasers for quantum technologies
arXiv (2024)
In a wide range of quantum technology applications, ranging from atomic clocks to the creation of ultracold or quantum degenerate …
A high-flux cold-atom source utilising a grating atom chip
arXiv (2024)
Bose-Einstein condensates (BECs) have been proposed for many applications in atom interferometry, as their coherence over long …
A triaxial vectorization technique for a single-beam zero-field atomic magnetometer to suppress cross-axis projection error
arXiv (2024)
Zero-field optically pumped magnetometers (OPMs) have emerged as an important technology for biomagnetism due to their ulta-sensitive …
Longitudinal spin-relaxation optimization for miniaturized optically pumped magnetometers
arXiv (2024)
The microfabrication of cesium vapor cells for optically pumped magnetometry relies on optimization of buffer gas pressure in order to …
Single-beam grating-chip 3D and 1D optical lattices
arXiv (2024)
Ultracold atoms are crucial for unlocking truly precise and accurate quantum metrology, and provide an essential platform for quantum …
Formation of stripes in a mixed-dimensional cold-atom Fermi-Hubbard system
arXiv (2023)
The relation between d-wave superconductivity and stripes is fundamental to the understanding of ordered phases in cuprates. While …