12:45
|
Lunch break
(until 14:30)
(Hörsaal B (Technik))
|
13:45
|
Lab tours
(until 14:15)
(Hörsaal B (Technik))
|
14:30
|
Skill session
(until 16:30)
(Hörsaal B (Technik))
|
16:30
|
Coffee break
(until 17:00)
(Hörsaal B (Technik))
|
17:00
|
Poster session
(until 18:45)
(Hörsaal B (Technik))
|
17:00
|
D-5/2 to P-3/2 spectroscopy on a single trapped Ba-138 ion
-
René Munk Thalund
(Ion Trap Group, Department of Physics and Astronomy, Aarhus University)
(Hörsaal B (Technik))
|
17:02
|
Microfabrication of surface ion traps for operation with Strontium Rydberg ions
-
Simon Schey
(Stockholm University and Infineon Technologies Austria AG)
(Hörsaal B (Technik))
|
17:04
|
Deployable ion trap quantum network node
-
Pascal Wintermeyer
(University of Innsbruck - Faculty of Experimental Physics)
(Hörsaal B (Technik))
|
17:06
|
Advancements in the cryogenic apparatus design for trapped ion quantum computing within the ATIQ project
-
Tobias Pootz
(Hörsaal B (Technik))
|
17:08
|
Industrially microfabricated 3D ion traps for quantum information processing and metrology
-
Max Glantschnig
(Infineon Technologies Austria AG)
(Hörsaal B (Technik))
|
17:10
|
State-preparation and quantum control of polyatomic molecular ions
-
Nanditha Sunil Kumar
(Universität Basel, Switzerland)
(Hörsaal B (Technik))
|
17:14
|
Twenty-zone surface ion trap with fully integrated photonics
-
Tereza Viskova
(Hörsaal B (Technik))
|
17:16
|
Towards a two-dimensional ion crystal immersed in an ultracold atomic cloud
-
Naoto Mizukami
(INRiM, LENS and Politecnico di Torino)
(Hörsaal B (Technik))
|
17:18
|
Enhancing Robustness in Ion Trap Quantum Logic through Optimal Control of Two-Qubit Operations
-
Kanika Kanika
(Hörsaal B (Technik))
|
17:20
|
Towards large scale quantum computing – a many qubit ion trap at room temperature
-
Paul Venetz
(Hörsaal B (Technik))
|
17:22
|
Towards state preparation, readout, and control of polyatomic molecular ions using quantum logic spectroscopy
-
Mariano Isaza Monsalve
(University of Innsbrcuk)
(Hörsaal B (Technik))
|
17:24
|
Demonstration of 2D connectivity for a two-dimensional ion trap architecture
-
Marco Valentini
(Universität Innsbruck)
(Hörsaal B (Technik))
|
17:26
|
Floquet-Gibbs states in laser-driven atomic systems
-
Wilson Santana Martins
(Universität Tübingen)
(Hörsaal B (Technik))
|
17:28
|
Design and Implementation of a Microwave-Based Rubidium Atomic Clock System
- Ms
Shaleena Jayaram
(South African Radio Astronomy Observatory)
(Hörsaal B (Technik))
|
17:30
|
Towards a high fidelity two-qubit state manipulation and readout using the ARTIQ Phaser and Grabber Modules.
-
Tobias Maddock
(Hörsaal B (Technik))
|
17:32
|
Fabrication of ion trap microchips with advanced features for trapped ion quantum coumputing
-
Vijay Kumar
(University of Sussex)
(Hörsaal B (Technik))
|
17:34
|
Progress towards a fault tolerant microwave-driven two qubit quantum processor utilizing Bayesian statistics for state determination
-
Alexander Onkes
(Institut für Quantenoptik, Leibniz Universität Hannover; PTB)
(Hörsaal B (Technik))
|
17:36
|
Trapped and cooled 88Sr+ ions in a cylindrical potential provided by a micro-fabricated ring trap
-
Lilay GROS-DESORMEAUX
(MPQ QITE)
(Hörsaal B (Technik))
|
17:38
|
Stopping and Trapping of Radioactive Isotopes for Precision Experiments (STRIPE)
-
Phillip Imgram
(KU Leuven (BE))
(Hörsaal B (Technik))
|
17:40
|
Towards a Scalable Logical Qubit: Yb and Ba Ion Toolkit
-
Parsa Rahimi
(University of Sussex IQT Research group)
(Hörsaal B (Technik))
|
17:42
|
Integrated photonics in trapped ion quantum computing
- Dr
Carmelo Mordini
(University of Padua)
(Hörsaal B (Technik))
|
17:44
|
Towards improvements in quantum networks using Fiber Fabry-Perot (FFP) microcavities
-
Roberts Berkis
(Hörsaal B (Technik))
|
17:46
|
Controlling trapped-ion qubits with microwave near-fields and a stimulated-Raman laser system
-
Emma Vandrey
(Leibniz Universität Hannover)
(Hörsaal B (Technik))
|
17:48
|
Design and development optimization of X junctions for three dimensional segmented ion traps
-
Santiago Emilio Bogino
(Universität Mainz)
(Hörsaal B (Technik))
|
17:50
|
A Ti:Sapph laser system for the state-selective preparation of nitrogen ions
-
Amber Shepherd
(University of Sussex)
(Hörsaal B (Technik))
|
17:52
|
Development of the antiproton trap for the GBAR experiment
-
Byungchan Lee
(Seoul National University (KR))
(Hörsaal B (Technik))
|
17:54
|
Phase sensitive modified cyclotron frequency measurements with single trapped antiprotons
-
Philip Geissler
(RIKEN (JP))
(Hörsaal B (Technik))
|
17:56
|
Hybrid Penning-Linear-Paul trap for ion recapture in a near-zero bias magnetic trap for hydrogen/antihydrogen spectroscopy
-
Levi Oliveira De Araujo Azevedo
(Federal University of Rio de Janeiro (BR))
(Hörsaal B (Technik))
|
17:58
|
Distributed quantum sensing in noisy environments with trapped ions
-
James Bate
(Innsbruck University)
(Hörsaal B (Technik))
|