activity
20242026
collaborators

5 papers

physics.atom-ph2026

Protocols of coherent motion control for an interaction-driven Rydberg gate

Valentin Magro, Wojciech Adamczyk, Sylvain de Léséleuc

Generating entanglement between two Rydberg atoms is at the core of neutral-atom quantum computers. Current two-qubit gates operate in the Rydberg-blockade regime, in which the ful…

physics.atom-ph2026

Creating squeezed and non-classical collective motional many-body states through stroboscopic Rydberg dressing

Roman Wußler, Chris Nill, Sylvain de Léséleuc +2

Realizing conditional quantum operations, e.g., quantum gates, for quantum computing and simulation requires controlled interactions between particles. Often, these interactions de…

physics.optics2026

Optimization-based hologram design for fine optical tweezer arrays and extension of super-resolution criteria

Keisuke Nishimura, Hiroto Sakai, Takafumi Tomita +2

Aligning light spots into arbitrary shapes is a fundamental challenge in holography, leading to various applications across diverse fields in science and engineering. However, as t…

physics.atom-ph2025

Measurement and feed-forward correction of the fast phase noise of lasers

Tom Denecker, Yukii Torii Chew, Oscar Guillemant +4

Lasers are the workhorse of quantum engineering in the atomic-molecular-optic community. However, phase noise of the laser, which can be especially large in popular semiconductor-b…

physics.atom-ph2024

Atom Camera: Super-resolution scanning microscope of a light pattern with a single ultracold atom

Takafumi Tomita, Yuki Torii Chew, Rene Villela +6

Sub-micrometer scale light patterns play a pivotal role in various fields, including biology, biophysics, and AMO physics. High-resolution, in situ observation of light profiles is…