5 papers
A Robust Strontium Tweezer Apparatus for Quantum Computing
Marijn Venderbosch, Rik van Herk, Zhichao Guo +11
Neutral atoms for quantum computing applications show promise in terms of scalability and connectivity. We demonstrate the realization of a versatile apparatus capable of stochasti…
Engineering Zeeman-manifold quintets using state-dependent light shifts in neutral atoms
Benedikt Heizenreder, Bas Gerritsen, Katya Fouka +4
We present a general method for engineering qudits through individually addressable transitions between Zeeman sublevels, achieved by combining a large linear Zeeman shift with a s…
Measurement of the g factor of ground-state 87Sr at the parts-per-million level using co-trapped ultracold atoms
Premjith Thekkeppatt, Digvijay, Alexander Urech +2
We demonstrate nuclear magnetic resonance of optically trapped ground-state ultracold 87Sr atoms. Using a scheme in which a cloud of ultracold 87Rb is co-trapped nearby, we improve…
Control of single spin-flips in a Rydberg atomic fractal
Robin C. Verstraten, Ivo H. A. Knottnerus, Yu Chih Tseng +6
Rydberg atoms trapped by optical tweezers have emerged as a versatile platform to emulate lattices with different geometries, in which long-range interacting spins lead to fascinat…
Parallel assembly of neutral atom arrays with an SLM using linear phase interpolation
Ivo H. A. Knottnerus, Yu Chih Tseng, Alexander Urech +2
We present fast parallel rearrangement of single atoms in optical tweezers into arbitrary geometries by updating holograms displayed by an ultra fast spatial light modulator. Using…