Micro-optical systems for quantum technologies with laser-trapped neutral atoms based on rapid prototyping by 3D direct laser writing

Tilman Preuschoff1, Simon Ristok2, Dominik Schäffner1, Lukas Brozio1, Daniel Ohl de Mello1, Lars Kohfahl1, Malte Schlosser1, Harald Giessen and G. Birkl1,2
  1. 1Institut für Angewandte Physik, Technische Universität Darmstadt
  2. 24. Physikalisches Institut, Universität Stuttgart

tilman [dot] preuschoff [at] physik [dot] tu-darmstadt [dot] de

State of the art 3D direct laser printing allows for fast and flexible fabrication of complex micro-optical systems. We present recent work with micro-lens arrays fabricated by femtosecond direct laser writing. Each lenslet generates an individual laser spot that can be configured to serve as an optical-tweezer trap for neutral atoms. Systems consisting of individual ultra-cold atoms in 2D registers of optical tweezers are well suited for neutral-atom based quantum technologies: Efficient quantum simulation, quantum information processing, and quantum metrology require scalable architectures that guarantee the allocation of large-scale resources of quantum systems. The implementation of 3D direct laser printing gives access to flexible multisite geometries for single-atom quantum systems. The fast production cycle allows to create arrays with arbitrary geometries on demand. This approach combines the advantages of optical tweezers generated by micro-optics with a highly adaptable geometries that will allow us to study a great variety of quantum phenomena in 2D quantum state registers.

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@inproceedings{dgao120-b16, title = {Micro-optical systems for quantum technologies with laser-trapped neutral atoms based on rapid prototyping by 3D direct laser writing}, author = {Tilman Preuschoff, Simon Ristok, Dominik Schäffner, Lukas Brozio, Daniel Ohl de Mello, Lars Kohfahl, Malte Schlosser, Harald Giessen and G. Birkl}, booktitle = {DGaO-Proceedings, 120. Jahrestagung}, year = {2019}, publisher = {Deutsche Gesellschaft für angewandte Optik e.V.}, issn = {1614-8436}, note = {Vortrag B16} }
120. Jahrestagung der DGaO · Darmstadt · 2019