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Poster size: A0 format (width: 841 mm x Height: 1189 mm) (Portrait). |
Posters Presentation: We recommend the poster presenters to stand in front of their poster in order to enhance fruitful discussions |
Posters Schedule: POSTERS SET UP: May 20 (Tuesday) – before the first coffee break // POSTERS DISMANTLING: May 22 (Thursday) – After the afternoon coffee break. All posters should be removed within 1 hour after the coffee break. Any question, please contact organisers onsite
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Other info: To each poster will be assigned a number. You will find double side tape in the registration desk to hang your poster. |
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Check the number assigned to your poster at the entrance of the exhibition and posters hall. |
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POSTERS (104) |
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32 |
Arash Ahmadi (Humboldt Universität zu Berlin, Germany) |
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Motion sensing using quantum memories in warm vapors
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51 |
Djeylan Aktas (Institute of Physics SAS, Slovakia) |
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skQCI Entanglement-based QKD national test-bed
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57 |
Elmahdi Amar (INL, Portugal) |
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Characterization of atomically thin graphene/h-BN stacked heterostructures
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1 |
Desislava Atanasova (IQOQI/UIBK, Austria) |
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In-situ tunable interaction with an invertible sign between a fluxonium and a post cavity
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Late 2 |
Jana Awad (Institute Neel/UGA, France) |
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Thermal conductivity in graphene based quantum nanoelectronic devices
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62 |
Ali Badreldin (Institut Neel, CNRS, France) |
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A 200-mm Superconducting Platform for the Microwave Characterization of Magnetic Materials at Low Temperature
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52 |
Daniel Balado-Souto (ITEFI (CSIC), Spain) |
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Design and simulation of photonic integrated circuits for multiprotocol and high-dimensional QKD
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50 |
Leo-Malik Benneka (CEA Grenoble, France) |
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The vanishing Fermi velocity in Periodically Strained Graphene
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2 |
Surajit Bera (JEIP, College de France, France) |
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Non-Stabilizerness of Sachdev-Ye-Kitaev Model
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3 |
Fabrizio Berritta (Niels Bohr Institute, University of Copenhagen, Denmark) |
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Real-time quantum control of qubits
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63 |
Daniel Blight (University of Manchester , UK) |
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Laser Activation of Single Implanted Group-IV Quantum Emitters in Diamond
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70 |
Gabriele Boschetto (CEA-Leti, France) |
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Modelling of Thermally-Activated Dipoles in Silicon Spin Qubits
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4 |
Elisa Bossard (CNRS - LPMMC, France) |
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Lower mimit to entropy production of a fault-tolerant measurement-free bit-flip quantum memory.
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71 |
Boris Brun-Barriere (CEA Grenoble, France) |
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Thermal susceptibility of hole spins
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42 |
Rhonald Burgos Atencia (Universita di Salerno, Italy) |
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Intrinsic longitudinal magnetoresistance in non-magnetic and centro-symmetric metals
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89 |
Tomáš Bzdušek (University of Zurich, Switzerland) |
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HyperCells and HyperBloch: software packages for hyperbolic tight-binding models
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64 |
Chaimae Chrirou (LPMMC, UGA, France) |
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Potential barriers make quantum thermoelectrics with nearly ideal efficiency at finite power output
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58 |
Agnieszka Corley-Wiciak (ESRF - European Synchrotron Radiation Facility, France) |
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Structural Fluctuations in Quantum Devices: Nanoscale Insights with Synchrotron Radiation
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5 |
Lara Couronné (Quandela/C2N, France) |
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Spin-photon entanglement for the generation of multiphotonic graph states
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6 |
Davide Cugini (Università degli studi di Pavia, Italy) |
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Adiabatic state preparation constrained on irreducible-representations subspaces
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72 |
Łukasz Cywiński (Institute of Physics, Polish Academy of Sciences, Poland) |
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Spin dephasing in a silicon double quantum dot and its implications for spin qubit shuttling
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7 |
Francesca D´Esposito (Néel, France) |
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Characterization of tantalum films for transmon molecule implementation
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43 |
Elsa Danielsson (Chalmers University of Technology, Sweden) |
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Optimizing energy conversion in quantum devices exploiting non-thermal resources
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53 |
Angela Diaz-Bricio (IMDEA Networks- Universidad Carlos III de Madrid, Spain) |
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A Research testbed for Multi-Domain QKD and PQC Network Applications and Services
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8 |
Kirill Dubovitskii (University Grenoble Alpes (UGA), France) |
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Theory of quasiparticle-induced errors in driven-dissipative Schrödinger cat qubits
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90 |
Robin Durand (Laboratoire de Physique des Solides, France) |
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Van Roosbroeck equations for 2D topological semiconductors
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9 |
Richard East (Haiqu, Italy) |
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Penrose Spin Calculus: ZX for SU(2)
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91 |
Lumen Eek (Utrecht University, The Netherlands) |
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Realization of a one-dimensional topological insulator in ultrathin germanene nanoribbons
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44 |
Abderrahim El Allati (Abdelmalek Essaadi University, Morocco) |
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Non-Markovian effects on the performance of a quantum Otto refrigerator
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92 |
Thomas Espinasse (LPENSL, France) |
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Optical non-reciprocity in magnetic Weyl semi-metals heterostructures
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65 |
Victor Feitosa (Max Planck Institute for Solid State Research, Germany) |
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Investigating Photon Bunching in STM-Induced Light
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93 |
Victor Fernandez Becerra (CPHT, CNRS, École Polytechnique, France) |
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Majorana bound states in Kitaev chains coupled to cavity photons
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73 |
Sam Fiette (CEA-Leti, France) |
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Large-scale extraction of quantum dots capacitances from industrial FD-SOI spin-qubits devices
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33 |
Chloé Fruy (LPENS, France) |
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Quantum Sensing of Axion Dark Matter with a Phase Resolved Haloscope
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10 |
Yuichi Fujita (National Institute of Advanced Industrial Science & Technology (AIST), Japan) |
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Fabrication and Measurements of Vanadium Superconducting Resonators on Silicon Wafers
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24 |
Marvin Gajewski (German Aerospace Center, Germany) |
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Scaling Up Dynamics Simulation of Open Quantum Systems on NISQ computers
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40 |
Marcelin Gallezot (JoS Quantum GmbH, Germany) |
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Quantum key distribution as a quantum machine learning task
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59 |
Thomas Jean-François Galvani (ICN2, Spain) |
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Atomistic simulations with experimentally estimated atomic positions in a SiGe quantum well
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66 |
Abhishek Ghosh (Nicolaus Copernicus University in Toruń, Poland) |
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Spontaneous emission of dipolar adatoms near SSH chains
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94 |
Szczepan Głodzik (Maria Curie-Skłodowska University, Poland) |
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Entanglement From Fluctuations: The Case of Broken Symmetries
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95 |
Laura Gomez Paz (Institut Neel, CNRS, France) |
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Disordered-induced topological phase transitions in Bismuth
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25 |
Maxence Grandadam (Haiqu, France) |
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Distributed Quantum Dynamics on near-term quantum processors
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34 |
Quentin Greffe (Institut Néel, CNRS, France) |
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Probing direct spin-phonon interactions with bulk acoustic wave resonators
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74 |
Guillermo Haas (CNRS - Institut Néel, France) |
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Measurement and simulation of exchange interaction in CMOS spin qubits
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75 |
Yaser Hajati (University of Konstanz, Germany) |
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Mitigating crosstalk in single hole-spin qubits within highly anisotropic g-tensors
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11 |
Jabir Hakami (Jazan University, Saudi Arabia) |
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Polarization Engineering photon entanglement between orthogonal quantum- dot exciton states coupled to whispering-gallery modes
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35 |
Johannes Höfer (Univ. Grenoble Alpes, CNRS, Grenoble INP, Institut Néel, France) |
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Mapping dissipation in a quantum dot device
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12 |
Elianor Hoffmann (C2N - Quandela, France) |
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Generation of Photonic Cluster States with Linear Optics
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13 |
Amin Hosseinkhani (IQM Quantum Computers, Germany) |
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Charge-parity switching effects and optimisation of transmon-qubit design parameters
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36 |
Abel Hugot (Univ. Grenoble Alpes, CNRS, Institut Néel, France) |
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Approaching optimal microwave-acoustic transduction on lithium niobate using SQUID arrays
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26 |
Gregor Humar (Jožef Stefan Institute, Slovenia) |
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Cooling through engineered dissipation on a programmable quantum annealer
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27 |
Costin Iancu (Lawrence Berkeley National Laboratory, USA) |
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Automatic Compilation of Dynamic Circuits
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14 |
Evan Ichir (ENS de Lyon, France) |
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Thermalization of cryogenic attenuators
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15 |
Tamas Kalmar (Budapest University of Technology, Hungary) |
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Localized quasiparticles in a fluxonium with quasi-two-dimensional amorphous kinetic inductors
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45 |
Behrooz Kasraee (Scientis company , Switzerland) |
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Time as a Moving Entity: A Unified Approach to Relativity, Quantum Measurement, and the Observer Effect
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96 |
Alicja Kawala (Jagiellonian Univeristy, Poland) |
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Quantized Spin Pumping in Majorana Nanowires
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97 |
Ethan Koskas (ETH Zürich, Switzerland) |
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In situ modification of quantum Hall phases by cavity vacuum fields
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76 |
Ferdinand Kuemmeth (University of Regensburg, Germany) |
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Proximitized gate-controlled quantum dots in germanium
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28 |
William Lam (LPMMC, France) |
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Hamiltonian and Lindbladian Learning with randomised Pauli states and measurements
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67 |
Xiao Li (City University of Hong Kong, Hong Kong SAR) |
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Fractional quantum anomalous Hall effects in rhombohedral pentalayer graphene
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16 |
Tristan Lorriaux (ENS de Lyon, France) |
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Addressing a spin-ensemble for storing microwave quantum states
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54 |
Santhosh M (Indian Institute of Technology, Kharagpur, India) |
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Network Utility Maximization for Optimal Resource Allocation in Quantum Networks
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77 |
Francesco Maraspini (TU Wien, Austria) |
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Scalable Al-Ge Hybrid Heterostructures for Next-Generation Superconducting Quantum Devices
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55 |
István Márton (HUN-REN Institute for Nuclear Research, Hungary) |
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Efficient computation of the classical bound of Bell correlation and prepare-and-measure witnesses in parallel environments
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98 |
Sergi Mas Mendoza (Institut Neel, CNRS, France) |
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ZX-diagrams as a Graphical Diagnose of Topological Order
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78 |
Nicklas Meineke (University of Konstanz, Germany) |
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Spin Qubit Leapfrogging: Dynamics of Shuttling Spin Qubits on top of another
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79 |
Victor Millory (CEA Grenoble, France) |
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Charge sensing in a FDSOI dual-nanowire hole-qubit device
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46 |
Romy Morin (Pheliqs CEA , France) |
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Multiple Quasiparticle Bound States in a Trap Created by a Local Superconducting Gap Variation
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47 |
Mykhailo Moskalets (Institute for Cross-Disciplinary Physics and Complex Systems IFISC (UIB-CSIC), Spain) |
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An e-h superposition created on demand
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17 |
Hazel Neill (Tyndall National Institute, Ireland) |
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Air Sensitivity Analysis of 2D Superconductor Materials for Advanced Josephson Junctions
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80 |
Andreas Nickl (University of New South Wales, Australia) |
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Tuning of multi-dot devices in SiMOS
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81 |
Musqan Nighojkar (University College London/London Center for Nanotechnology, UK) |
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Fabrication of On-Chip Microwave Antenna for Spin Qubit Control
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82 |
Matteo Orlandoni (CEA, France) |
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Quantum Device Integration in Ge/SiGe heterostructure
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18 |
Samuele Piccinelli (IBM Research Zurich, Switzerland) |
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Efficient calculation of Green’s functions on quantum computers via simultaneous circuit perturbation
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56 |
Thomas Pousset (Télécom Paris, France) |
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Kramers-Kronig detection in the quantum regime
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48 |
Hadi Rammal (CNRS Institut Néel, France) |
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Transient localization from the interaction with quantum Fluctuations
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29 |
Hannu Reittu (VTT Technical Research Centre of Finland, Finland) |
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Quantum walks on quantum computers for applications - first steps
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60 |
Simon Robson (Institute of Science and Technology Austria, Austria) |
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Optimising the quality of gate dielectrics in Ge hole-spin qubit devices
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Late 1 |
Hector Roche (CNRS / Institut Néel, France) |
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A Family of Aperiodic Tilings with Tunable Quantum Geometric Tensor
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19 |
Mauricio Rodríguez (CEA/IRIG/MEM/L_Sim, France) |
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Exchange interaction in Germanium hole spin qubits
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99 |
Carlos Rosário (INL - International Iberian Nanotechnology Laboratory, Portugal) |
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Interfacing topological insulators with ferromagnets for spin-orbitronics
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83 |
Gregoire Roussely (CEA, France) |
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FDSOI spin qubits platform for scalable quantum computing
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84 |
Tancredi Salamone (CEA-Leti, France) |
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Evaluation of Charge Stability Diagrams Through Fourier Analysis
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68 |
Sofia Sanz Wuhl (CSIC-CFM, Spain) |
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Interface and spin states in armchair graphene nanoribbon junctions
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30 |
Michael Schelling (German Aerospace Center (DLR), Germany) |
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Hybrid Krylov-Subspace Methods for Solving Non-Linear PDEs on Quantum Computers
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61 |
Jean-Maxime Schlachter (CEA Grenoble, France) |
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Epitaxial growth of few-layer NbSe2 on graphene
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49 |
Christian Schlager (Austrian Academy of Sciences, Austria) |
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Vacuum-Gap Microstrips for Impedance-Matching Traveling-Wave Parametric Amplifiers
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37 |
Daniel Schroller (Karlsruhe Institue of Technology, Germany) |
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Magnetometry of Single-Molecule Magnets Using Industrial Silicon-Based Spin Qubits
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31 |
Martin Schumann (LMU Munich, Germany) |
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Railway Schedule Optimization using Gate Based Quantum Computers
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20 |
Amanda Seedhouse (CNRS , France) |
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Wavelet correlation noise analysis for qubit operation variable time series
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38 |
Tapas Senapati (Weizmann Institute of Science, Israel) |
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Detection of the Magnetic Signal of Mn₁₂ Single-Molecule Magnets Using Nano-SQUIDs
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85 |
Devashish Shah (Institute of Science and Technology Austria, Austria) |
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Preserving Coulomb blockade in transport spectroscopy of quantum dots by dynamical tunnel barrier compensation
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21 |
Philipp Straub (University of Innsbruck, Austria) |
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High-Q Magnetic Flux Hose: A Dual-Purpose Approach for Fast Tuning and Readout
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86 |
Yan Sun (Centre de nanosciences et de nanotechnologies, France) |
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Vanishing conductivity at the Dirac point in graphene/PbI2 heterostructure
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69 |
Bilal Tanatar (Bilkent University, Turkey) |
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Effects of Rashba and Dresselhaus Spin-Orbit Interactions on the Gap Anisotropy in Layered Superconductors
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41 |
Andrei Voicu Tomut (ICN2, Spain) |
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Machine Learning-Driven Hamiltonian Matrix Prediction Applied to aBN and hBN
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87 |
Jann Ungerer (Harvard, USA) |
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A three-dimensional Array of Quantum Dots
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22 |
Vasilisa Usova (IQOQI, University of Innsbruck, Austria) |
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Closed-loop optimization of quantum states via efficient state reconstruction
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100 |
Amit Vashisht (Université Libre de Bruxelles (ULB), Belgium) |
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Chiral polaron formation on the edge of topological quantum matter
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101 |
Valentyn Volobuiev (International Research Centre MagTop, Institute of Physics, PAS, Poland) |
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2D Hole Gas in (111) Pb0.75Sn0.25Se/Pb0.90Eu0.10Se Quantum Wells explored by Magneto-Transport
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102 |
Valentyn Volobuiev (International Research Centre MagTop, Institute of Physics, PAS, Poland) |
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Dirac and Weyl Fermions in Strained Grey-Sn films on Hybrid CdTe/GaAs (001) Substrate
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39 |
Richard Wagner (Leiden University, The Netherlands) |
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On the detection of local (quantum phase?) fluctuations in disordered superconductors
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88 |
Julius Werner (CEA Grenoble, France) |
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Germanium Bolometers for Quantum Information
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23 |
Robert Whitney (Univ Grenoble Alpes & CNRS, France) |
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Speed versus temperature for energy-efficient quantum computing: learning from existing spin-qubits
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