Participants

Please note that we don't provide a poster printing service.  Posters should be A0 size, portrait format.  

 


Seongji Ahn, KAIST, South Korea
Single-qubit quantum gate at an arbitrary speed

Ellis Ainley, University of Oxford, United Kingdom
Quantum Networking with Trapped 88Sr+ and 43Ca+ Ions

James Bainbridge, Macquarie University, Australia
Nonlinear effects can enhance microwave-to-optics quantum state transduction

Ilinca Butu, Extreme Light Infrastructure - Nuclear Physics (ELI-NP), Romania
Optimising Lossy Mach-Zehnder Interferometer Configurations: A Python-Based Approach to Quantum Fisher Information Maximization

Catherine Challoner, University of Oxford, United Kingdom
Engineering Scalable Quantum Computing Networks of Trapped Ions and Single Photons

Ilia Chernobrovkin, Niels Bohr Institute, University of Copenhagen, Denmark
Topologically protected phononic waveguide in a soft-clamped mechanical resonator platform

Alex Chivers-White, Newcastle University, United Kingdom
Gauge-Relativity and Localisation

Kenneth Choo, Monash University, Australia
Polaronic polariton quasiparticles in a dark excitonic medium

Sergio De Maria Garcia, Universidad politécnica de Valencia - IUMPA, Spain
Shortcuts to adiabaticity method applied to ultra-cold atom gases

Oliver Dudgeon, University of Manchester, United Kingdom
Tensor Networks for Solid State Emitters: Understanding Effects of Localised and Delocalised Phonon Modes on Photon Indistinguishability

Naoya Egawa, Tohoku University, Japan
Time-crystalline behavior in diamond quantum simulator models under zero magnetic field

Ian Ford, University of Sussex, United Kingdom
Cavity assisted ion-photon entanglement

Sayak Guha Roy, Rice University, USA
Reweighted Time-Evolving Block Decimation for Improved Quantum Dynamics Simulations

Ahmed Hassanen, University of Oxford, United Kingdom
An efficient quantum optical interface to a multi-qubit register

Matthias Hüls, Forschungszentrum Jülich GmbH, Germany
Applying optimal control to atomic quantum simulators

Christoforos Iakovou, University of Cambridge, United Kingdom
Nonlinear quantum optics with Rydberg excitons

Juliette Jiménez Jaimes, Université Toulouse 3 : Paul Sabatier / Laboratoire Collisions Agrégats Réactivité, France
Light-matter interfaces with 1D ordered atomic ensembles

Haruki Kikuchi, University of Tokyo, Japan
Evaluation of the voltage annealing effect on the Josephson potential in superconducting qubits

Philip Kitson, University of Catania / Technology Innovation Insititute, United Arab Emirates
Rydberg Atomtronic Devices

Reina Kobayashi, Hosei University, Japan
Quantum algorithm for computer graphics

Tsai-Chen Lee, University of California, Berkeley, USA
The use of squeezed light for impulse measurement below the SQL

Kimia Masoudifar, Sharif University of Technology, Iran
Using DMRG Method in the Language of MPS for Simulating Quantum Many-Body Systems

Theodore McKeever, University of Manchester, United Kingdom
The Performance of a Finite-Time Quantum Heat Engine subject to Control Noise and Enhancement Techniques

Lachlan Miller, University of Queensland, Australia
Phononic crystals for inertial sensing with dilute gas superfluids

Yasufumi Nakano, Monash University, Australia
Variational approach to the two-dimensional Bose polaron

Veronica Nieto, Center for Research and Advances Studies (Cinvestav), Mexico
Quantum memory based on Rubidium-87 atomic assemblies using Electromagnetically Induced Transparency (EIT)

Takefumi Nomura, The University of Tokyo, Japan
Subtracting Four Photons from Squeezed Light

Kazuki Oi, Tohoku university, Japan
Universality of Efimov states in cold atoms with dipole interaction

Sofia Peron Santana, Universidad Nacional de Córdoba, Argentina
Quantum state transfer performance of Heisenberg spin chains with site-dependent interactions designed using a generic genetic algorith

Kichan Park, KAIST, South Korea
Analytically equivalent problem of Quantum Two-Level System

Hannah Riley, University of Manchester, United Kingdom
Metasurface mediated long-range entanglement of quantum emitters as a future platform for quantum computing

Lars Arne Schäfer, Technische Universität Darmstadt, Germany
Coherent Control of Few-Body States in Bose-Hubbard Rings by Bragg Diffraction and Parametric Driving

Colby Schimelfenig, Washington State University, USA
Momentum space realization of Josephson physics with spin-orbit coupled Bose-Einstein condensates

Mariana Scola, Federal University of Rio Grande do Sul, Brazil
Generating NOON States in the Integrable Four-well Model

Anubhav Kumar Srivastava, Institute of Photonic Sciences (ICFO), Spain,
Topological quantum thermometry

Edoardo Maria, Tiburzi University of Padova, Italy
Topological phases in the presence of disorder and longer-range couplings

Niels Timmerman, University of Cambridge, United Kingdom
Quantum networking with tin-vacancy centres in diamond

Marco Uguccioni, University of Padua, Italy
Keldysh field theory approach to electric and thermoelectric transport in quantum dots

Lorenzo Versini, University of Oxford, United Kingdom
Implementing Scalable Solutions for a Networked Ion Trap System

Peng Wang, Tokyo Institute of Technology, Japan
Transform-limited photon emission from single lead-vacancy center in diamond for two-photon interference

Donovan Webb, University of Oxford, United Kingdom
Overcoming and Harnessing Non-Commuting Dynamics in Trapped Ions

Aleksandr Zaitsev, Ulm University, Germany
Advanced Studies in Ultracold 87Rb Molecules and Hollow Core Fibers

Anthony Zuli, Monash University, Australia
Universal Efimov scaling in the Rabi driven few-body spectrum