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20162021
most citedEnhanced atom-by-atom assembly of arbitrary tweezers arrays

99 citations · 271 across the 4 of their papers we have counts for

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physics.atom-ph202155 cited

Single Atoms with 6000-Second Trapping Lifetimes in Optical-Tweezer Arrays at Cryogenic Temperatures

Kai-Niklas Schymik, Sara Pancaldi, Florence Nogrette +4

We report on the trapping of single Rb atoms in tunable arrays of optical tweezers in a cryogenic environment at K. We describe the design and construction of the experime…

physics.atom-ph202122 cited

Fast and efficient preparation of 1D chains and dense cold atomic clouds

Antoine Glicenstein, Giovanni Ferioli, Ludovic Brossard +5

We report the efficient and fast () preparation of randomly loaded 1D chains of individual Rb atoms and of dense atomic clouds trapped in optical tweezers…

physics.atom-ph202099 cited

Enhanced atom-by-atom assembly of arbitrary tweezers arrays

Kai-Niklas Schymik, Vincent Lienhard, Daniel Barredo +4

We report on improvements extending the capabilities of the atom-by-atom assembler described in [Barredo et al., Science 354, 1021 (2016)] that we use to create fully-loaded target…

physics.atom-ph2019

Three-dimensional trapping of individual Rydberg atoms in ponderomotive bottle beam traps

Daniel Barredo, Vincent Lienhard, Pascal Scholl +4

We demonstrate three-dimensional trapping of individual Rydberg atoms in holographic optical bottle beam traps. Starting with cold, ground-state Rb atoms held in standard op…

physics.atom-ph2018

Analysis of imperfections in the coherent optical excitation of single atoms to Rydberg states

Sylvain de Léséleuc, Daniel Barredo, Vincent Lienhard +2

We study experimentally various physical limitations and technical imperfections that lead to damping and finite contrast of optically-driven Rabi oscillations between ground and R…