most citedDefect-free assembly of 2D clusters of more than 100 single-atom quantum systems

171 citations · 307 across the 5 of their papers we have counts for

collaborators

5 papers

quant-ph2023★ 30 cited

Quantum Sensing in Tweezer Arrays: Optical Magnetometry on an Individual-Atom Sensor Grid

Dominik Schäffner, Tobias Schreiber, Fabian Lenz +2

We implement a scalable platform for quantum sensing comprising hundreds of sites capable of holding individual laser-cooled atoms and demonstrate the applicability of this single-…

quant-ph2023★ 17 cited

Reservoir-based deterministic loading of single-atom tweezer arrays

Lars Pause, Tilman Preuschoff, Dominik Schäffner +2

State-of-the-art individual-atom tweezer platforms have relied on loading schemes based on spatially superimposing the tweezer array with a cloud of cold atoms created beforehand.…

physics.optics2019★ 34 cited

Arrays of individually controllable optical tweezers based on 3D-printed microlens arrays

Dominik Schäffner, Tilman Preuschoff, Simon Ristok +4

We present a novel platform of optical tweezers which combines rapid prototyping of user-definable microlens arrays with spatial light modulation (SLM) for dynamical control of eac…

quant-ph2019★ 55 cited

Scalable multilayer architecture of assembled single-atom qubit arrays in a three-dimensional Talbot tweezer lattice

Malte Schlosser, Sascha Tichelmann, Dominik Schäffner +4

We report on the realization of a novel platform for the creation of large-scale 3D multilayer configurations of planar arrays of individual neutral-atom qubits: a microlens-genera…

quant-ph2019★ 171 cited

Defect-free assembly of 2D clusters of more than 100 single-atom quantum systems

Daniel Ohl de Mello, Dominik Schäffner, Jan Werkmann +4

We demonstrate the defect-free assembly of versatile target patterns of up 111 neutral atoms, building on a 361-site subset of a micro-optical architecture that readily provides th…