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High-fidelity collisional quantum gates with fermionic atoms
Nature 652, 602–608 (2026)
Quantum simulations of electronic structure and strongly correlated quantum phases are among the most promising applications of quantum …
Quantum-gas microscopy and Talbot interferometry of the Bose-glass phase
Physical Review A 113, (2026)
Disordered potentials fundamentally affect transport and coherence in quantum systems, giving rise to a Bose-glass phase in interacting …
Graph coloring via quantum optimization on a Rydberg-qudit atom array
Quantum Science and Technology 11, (2026)
Neutral atom arrays have emerged as a versatile candidate for the embedding of hard classical optimization problems. Prior work has …
High-resolution atomic magnetometer-based imaging of integrated circuits and batteries
IEEE Transactions on Instrumentation and Measurement 75, 1–10 (2026)
Optically pumped magnetometers (OPMs) have emerged as a powerful technique for high-resolution magnetic field imaging. However, …
Intrinsic atomic calibration of oscillating magnetic fields in ULF and VLF bands
Review of Scientific Instruments 97, (2026)
We present a method for absolute calibration of received radio frequency in the ultra-low frequency and very low frequency range. This …
A quantum wire approach to weighted combinatorial graph optimisation problems
Arxiv (2026)
Observation of emergent scaling of spin-charge correlations at the onset of the pseudogap
Proceedings of the National Academy of Sciences of the United States of America 123, (2026)
In strongly correlated materials, interacting electrons are entangled and form collective quantum states, resulting in rich …
Practical primary thermometry via alkali-metal-vapour Doppler broadening
Philosophical Transactions of the Royal Society A: Mathematical Physical and Engineering Sciences 384, (2026)
Doppler-broadening thermometry (DBT) can be used as a calibration-free primary thermometer suitable for practical applications, e.g. …
Reducibility of native weighted graphs on Rydberg Arrays
Arxiv (2026)
Tunable optical lattices for the creation of matter-wave lattice solitons
Optics Express 34, 623–637 (2026)
We present experimental techniques that employ an optical accordion lattice with dynamically tunable spacing to create and study bright …