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Andrew J. Daley

University of Strathclyde · GB
Area of research
Atomic and Molecular Physics, and Optics · Artificial Intelligence
Research interest
Research interests include Cold Atom Physics and Bose-Einstein Condensates, Quantum many-body systems, Quantum Information and Cryptography, and Quantum, superfluid, helium dynamics.
h-index
44
citations
9,997
works
219
NIH funding
primary concept
Physics
email

Recent publications

Quantum-gas microscopy and Talbot interferometry of the Bose-glass phase
Physical Review A 2026cited by 0position: contributordoi
Dissipation engineering of fermionic long-range order beyond the Lindblad limit
Physical Review B 2026cited by 0position: contributordoi
Demonstration of Weighted-Graph Optimization on a Rydberg-Atom Array Using Local Light Shifts
PRX Quantum 2025cited by 13position: contributordoi
Dynamical structure factor from weak measurements
Quantum Science and Technology 2025cited by 2position: contributordoi
Entangled States from Sparsely Coupled Spins for Metrology with Neutral Atoms.
2025cited by 0position: contributordoi
Speeding Up Quantum Measurement Using Space-Time Trade-Off.
2025cited by 0position: contributordoi
Engineered chirality of one-dimensional nanowires.
2025cited by 0position: contributordoi
Few-body bound topological and flat-band states in a Creutz ladder
Physical Review B 2024cited by 6position: contributordoi
Ultracold atoms carrying orbital angular momentum: Engineering topological phases in lattices
Europhysics Letters 2024cited by 2position: contributordoi
Commensurate and incommensurate 1D interacting quantum systems.
2024cited by 0position: contributordoi
Variational Quantum Algorithms for Computational Fluid Dynamics
AIAA Journal 2023cited by 82position: contributordoi
Counterdiabatic Optimized Local Driving
PRX Quantum 2023cited by 69position: middledoi
Counterdiabatic Optimized Local Driving
PRX Quantum 2023cited by 63position: contributordoi
Kaleidoscopes of Hofstadter butterflies and Aharonov-Bohm caging from <mml:math xmlns:mml="http://www.w3.org/1998/Math/MathML"><mml:msup><mml:mn>2</mml:mn><mml:mi>n</mml:mi></mml:msup></mml:math> -root topology in decorated square lattices
Physical Review Research 2023cited by 14position: contributordoi
Twenty-five years of analogue quantum simulation
Nature Reviews Physics 2023cited by 11position: contributordoi
Practical quantum advantage in quantum simulation.
2022cited by 97position: contributordoi
Non-Markovian Quantum Dynamics in Strongly Coupled Multimode Cavities Conditioned on Continuous Measurement
PRX Quantum 2022cited by 28position: contributordoi
High-fidelity multiqubit Rydberg gates via two-photon adiabatic rapid passage
Quantum Science and Technology 2022cited by 27position: contributordoi
Measurement-induced phase transitions in sparse nonlocal scramblers
Physical Review Research 2022cited by 20position: contributordoi
Many-Body Quantum State Diffusion for Non-Markovian Dynamics in Strongly Interacting Systems.
2022cited by 17position: contributordoi
Tunable Geometries in Sparse Clifford Circuits
Symmetry 2022cited by 4position: contributordoi
Density Matrix Renormalization Group for Continuous Quantum Systems.
2022cited by 0position: contributordoi
One-dimensional Kronig–Penney superlattices at the LaAlO3/SrTiO3 interface
Nature Physics 2021cited by 16position: contributordoi
Hubbard models and state preparation in an optical Lieb lattice
New Journal of Physics 2021cited by 9position: contributordoi
Spin-orbit-assisted electron pairing in one-dimensional waveguides
Physical Review B 2021cited by 5position: contributordoi
Deterministic Fast Scrambling with Neutral Atom Arrays.
2021cited by 3position: contributordoi
Interplay between coherent and dissipative dynamics of bosonic doublons in an optical lattice
Physical Review Research 2020cited by 17position: contributordoi
Adiabatic preparation of entangled, magnetically ordered states with cold bosons in optical lattices
Quantum Science and Technology 2020cited by 13position: contributordoi
Enhanced repulsively bound atom pairs in topological optical lattice ladders
Quantum Science and Technology 2020cited by 11position: contributordoi
Dissipative dynamics and cooling rates of trapped impurity atoms immersed in a reservoir gas
Physical Review A 2020cited by 9position: contributordoi

Grants

No grants ingested yet.

Frequent collaborators

· 33 papers (2020–2026) · 7 papers (2020–2025)François Damanet · University of Liège4 papers (2021–2026)Jonathan D. Pritchard · Engineering and Physical Sciences Research Council4 papers (2022–2025)G. Pelegrí · Universitat Autònoma de Barcelona3 papers (2022–2025)Stefan Kuhr · University of Strathclyde3 papers (2020–2026)Gregory S. Bentsen · SpringerNature3 papers (2021–2022)Jeremy Levy · Pittsburgh Quantum Institute3 papers (2021–2025)Anton S Buyskikh · 3 papers (2020–2022)Parsonage Christopher · University of Strathclyde2 papers (2024–2026)Koehn Lennart · University of Strathclyde2 papers (2024–2026)Kuhr Stefan · University of Strathclyde2 papers (2024–2026)R G Lena · University of Strathclyde2 papers (2020–2025)J. Schachenmayer · Institut de Science et d'Ingénierie Supramoléculaires2 papers (2020–2020)A. M. Marques · American Chemical Society2 papers (2023–2024)R. G. Dias · Universidade do Porto2 papers (2021–2024)Arthur La Rooij · Laboratoire Kastler Brossel2 papers (2024–2026)M. L. Chiofalo · University of Pisa2 papers (2020–2026)Tomohiro Hashizume · Universität Hamburg2 papers (2022–2022)Wolfgang Ketterle · Massachusetts Institute of Technology2 papers (2020–2020)