Publication

Neutral atom quantum computing
Contemporary Physics 1–19 (2026)
Neutral atom quantum computing has evolved rapidly over the last decade, with experiments moving from investigating dipole-dipole …
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 …
A quantum wire approach to weighted combinatorial graph optimisation problems
Arxiv (2026)
Entangled states from sparsely coupled spins for metrology with neutral atoms
Physical Review Letters 134, (2025)
Quantum states featuring extensive multipartite entanglement are a resource for quantum-enhanced metrology, with sensitivity up to the …
A review and collection of metrics and benchmarks for quantum computers: definitions, methodologies and software
(2025)
Quantum computers have the potential to provide an advantage over classical computers in a number of areas. Numerous metrics to …
Speeding up quantum measurement using space-time trade-off
Physical Review Letters 134, (2025)
We present a scheme for speeding up quantum measurement. The scheme builds on previous protocols that entangle the system to be …
Demonstration of weighted graph optimization on a Rydberg atom array using local light-shifts
PRX Quantum 6, (2025)
Neutral-atom arrays have emerged as a versatile platform toward scalable quantum computation and optimization. In this paper, we …
Graph Coloring via Quantum Optimization on a Rydberg-Qudit Atom Array
Arxiv (2025)
Erratum: Optimal state choice for Rydberg-atom microwave sensors [Phys. Rev. Appl. 16, 024008 (2021)]
Physical Review Applied 22, (2024)
Object detection and range finding with quantum states using simple detection
Physical Review Applied 21, (2024)
The task of sensing the presence of a target object using a weak light source is challenging when the object is embedded in a noisy …