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Dresden 2026 – wissenschaftliches Programm

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QI: Fachverband Quanteninformation

QI 14: Quantum Information Poster Session

Mittwoch, 11. März 2026, 18:00–21:00, P4

18:00 QI 14.1 An Efficient Error Correction Protocol Variant for Field Tests of Continuous-Variable Quantum Key DistributionLukas Eisemann, •Stefan Richter, Hüseyin Vural, Ömer Bayraktar, Kevin Jaksch, and Christoph Marquardt
18:00 QI 14.2 Entanglement with a mode observable via a tunable interaction with a qubit — •Malgorzata Strzalka, Radim Filip, and Katarzyna Roszak
18:00 QI 14.3 Non-perturbative approach to entanglement harvesting — •Fabian Ganzer, Mei Yu, and Walter Strunz
18:00 QI 14.4 Simulating and Utilizing Dissipative Non-Equilibrium Physics on NISQ Devices — •Rochus Lechler, Pascal Stadler, Jan Reiner, Dominik Maile, Michael Marthaler, and Joachim Ankerhold
18:00 QI 14.5 Entanglement generation in quantum networks driven by multi-mode squeezed radiation — •Miguel Angel Palomo Marcos, Franz Pöschl, and Peter Rabl
18:00 QI 14.6 Non-Markovian bound-state formation in a giant atom with two coupling points — •Mei Yu, Stefan Nimmrichter, and Walter Strunz
18:00 QI 14.7 Entanglement distillation of microwave entangled states — •Ivan Solomakhin, Simon Gandorfer, Maria-Teresa Handschuh, Jasmine Frijters, Wun Kwan Yam, Achim Marx, and Kirill G. Fedorov
18:00 QI 14.8 Noise mitigation in microwave quantum key distribution using single-photon detection — •Jasmine Frijters, Ivan Solomakhin, Simon Gandorfer, Wun Kwan Yam, Maria-Teresa Handschuh, Achim Marx, and Kirill G. Fedorov
18:00 QI 14.9 Bounds on quantum conference key agreement in networks with bipartite links — •Justus Neumann, Anton Trushechkin, Hermann Kampermann, and Dagmar Bruß
18:00 QI 14.10 Entanglement of Electron and Nuclear Spins in Diamond — •Magnus J. R. Platena, Marius M. Straßner, Tim C. Duka, and Martin S. Brandt
18:00 QI 14.11 Differential magnetometry with partially flipped Dicke states — •Iagoba Apellaniz, Manuel Gessner, and Géza Tóth
18:00 QI 14.12 Calculation of Binding Energies for a Total of 25 Nuclei Between 2 and 12 nucleon Nuclei Using the Quantum Computer VQE Algorithm — •Taylan BAŞKAN and Ahmet Hakan YILMAZ
18:00 QI 14.13 Quantum error mitigation on a bosonic quantum processing unit — •Corvin Lenz, Tanay Roy, Yao Lu, and Peter Orth
18:00 QI 14.14 Efficient Spin-Adapted QPE Initial State Preparation — •Hampus Brunander and Werner Dobrautz
18:00 QI 14.15 Superconducting Digital-Analog Circuits for Quantum Approximate Optimization — •Siyu Wang and Mohammad H. Ansari
18:00 QI 14.16 Mitigating Noise in Quantum-Classical Electronic Band Structure Calculations — •Vojtěch Vašina and Martin Friák
18:00 QI 14.17 Effects of geometry on the error threshold of the toric code — •Daniel Lessing, Calvin Kraemer, Jan Alexander Koziol, Anja Langheld, and Kai Phillip Schmidt
18:00 QI 14.18 Effect of Long-range Crosstalk Errors on the Surface Code — •Solomon Birhanu Samuel and Janos Karoly Asboth
18:00 QI 14.19 Hybrid Quantum-Classical Walks with Applications to Machine Learning — •Adrián Marín Boyero, Daniel Manzano Diosdado, and Carlos Cano Gutiérrez
18:00 QI 14.20 GRAPE with feedback: the method and the Python package — •Pavlo Bilous and Florian Marquardt
18:00 QI 14.21 Characterization of spin-relaxation dynamics of rare earth ions in CaWO4 — •Sebastian Dominguez-Calderon, Georg Mair, Arjun Bhasker, Robert Pant, Hans Huebl, and Nadezhda Kukharchyk
18:00 QI 14.22 Qubit analogues in exciton-polariton condensates with optical manipulation — •Roman Lebs, Jan Wingenbach, Hendrik Rose, and Stefan Schumacher
18:00 QI 14.23 Si/SiGe interfaces for scalable qubit devices - a depth resolved HAXPES study — •Nathalie Niederbudde, Andreas Fuhrberg, Denny Dütz, Andrej Gloskovskii, Christoph Schlueter, Lars R. Schreiber, and Martina Müller
18:00 QI 14.24 Industrially fabricated and isotopically enriched Si/SiGe Quantum Dots for coherent spin qubit control — •Dominic Barthlott, Viktor Adam, Daniel Sitter, Daniel Schroller, Clement Godfrin, and Wolfgang Wernsdorfer
18:00 QI 14.25 Induced quantum dot microscopy of germanium and graphene quantum devices — •Patrick Raif, Aurèle Kamber, Luca Forrer, Christian Olsen, Martino Poggio, Andrea Hofmann, and Floris Braakman
18:00 QI 14.26 Exploration of exotic dielectric barrier materials for quantum computing — •Leqi Zhou, Thomas J. Smart, Christine Falter, Josua Thieme, Joscha Domnick, Benjamin Bennemann, Detlev Grützmacher, Peter Schüffelgen, and Alexander Pawlis
18:00 QI 14.27 Low-overhead Liouvillian Learning of Superconducting Qubit Arrays via Simultaneous Weak Measurements — •Markus Sifft, Armin Ghorbanietemad, and Daniel Hägele
18:00 QI 14.28 Making entanglement witnesses robust to measurement errors — •Elisa Monchietti and Otfried Gühne
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