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UID:6944-8860@fg-qc.gi.de
CLASS: PUBLIC
SUMMARY:GI Quantum Computing Workshop 2025
DESCRIPTION:The GI Quantum Computing Workshop 2025 offers a comprehensive p
 latform for exploring cutting-edge developments and innovations in quantum 
 computing, aligning with the festival’s focus on openness and accessibility
  in a digitally networked world. As the annual gathering of the German Quan
 tum Computing community, this workshop will highlight how open access, open
  data, and open-source principles can foster advancements in quantum techno
 logies, accelerate innovation, and broaden the field’s impact across discip
 lines.\n\nProgram\n\n 	 		 			Time 			Session 		 		 			9:00 - 9:15 			Welco
 me and Opening Remarks; Jörg Lässig 		 		 			9:15 - 10:00 			Keynote: Beyon
 d Moore's Law - Current and future quantum computing technologies and solut
 ions; Ingolf Wittmann 		 		 			10:00 - 10:30 			A QAOA Pipeline with focus 
 on ML enhancements and stochastic optimization; Daniel Müssig and Sukanya S
 ukanya 		 		 			10:30 - 11:00 			Coffee Break 		 		 			11:00 - 11:30 			QC-
 Adviser: Quantum Hardware Recommendations for Solving Industrial Optimizati
 on Problems; Markus Zajac 		 		 			11:30 - 12:00 			An explicit ancilla-fre
 e quantum circuit construction for Gaussian convolutions; Oliver Hüttenhofe
 r 		 		 			12:00 - 12:30 			Study of robustness of Quantum Machine Learning
  and its countermeasures against adversarial attacks when facing noise; Mar
 c Maußner 		 		 			12:30 - 14:00 			Lunch-Break 		 		 			14:00 - 14:30 			L
 earning from the Classical Realm: Leveraging MLIR for a Modular Quantum Com
 pilation Infrastructure; Robert Wille 		 		 			14:30 - 15:00 			Towards Rea
 l-World System-Level Integration of Quantum Accelerators: A Hardware/Softwa
 re Co-Design Approach; Ralf Ramsauer 		 		 			15:00 - 15:30 			Towards Moni
 toring and Diagnosing Quantum Digital Twins; Martin Sachenbacher 		 		 			1
 5:30 - 16:00 			Coffee Break 		 		 			16:00 - 16:30 			An Efficient Quantum
  Classifier Based on Hamiltonian Representations; Federico Tiblias 		 	 
LOCATION:Universität Potsdam - Campus Griebnitzsee
DTSTAMP:20250918T082515Z
DTSTART:20250919T070000Z
DTEND:20250919T160000Z
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