Invited Speakers
01 - 05 June 2025
Hilton San Francisco Union Square
San Francisco, California USA
Optica Quantum 2.0 Conference and Exhibition
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Peter Knight, Imperial College London, United Kingdom
100 Years of Quantum: The Journey from Great Science to Societal Impact Keynote -
Alexander Ling, Centre for Quantum Technologies, Singapore
Title to be Announced Keynote -
Christopher Monroe, Duke University, United States
Title to be Announced Keynote -
Carmen Palacios-Berraquero, nu Quantum, United Kingdom
Title to be Announced Keynote -
Jelena Vuckovic, Stanford University, United States
Chip-scale Quantum Many-body Systems with Semiconductor Color Centers in Integrated Photonics Keynote -
Guido Burkard, University of Konstanz, Germany
Spin Based Quantum Computing Tutorial -
Christoph Simon, University of Calgary, Canada
Quantum Repeaters and Networking Tutorial -
Elizabeth Goldschmidt, Univ of Illinois at Urbana-Champaign, United States
Solid State Memories -
Jonathan Lavoie, INSTITUTE FOR QUANTUM COMPUTING,
Photonic QC -
Christoph Marquardt, Friedrich-Alexander-Universität, Germany
Space-based QKD -
Reza Nejabati, Cisco Systems Inc., United States
Quantum Data Center: A Vision for the Future of Quantum Computing and Networking -
Katrin Paschke, Ferdinand-Braun-Institut (FBH), Germany
Ultra-compat Quantum-nonlinear-interferometer-modules for Mid-IR sensing with Undetected Photons -
Marianna Safronova, University of Delaware, United States
Title to be Announced -
Erhan Saglamyrek, University of California Berkeley, United States
Quantum Networking Efforts -
Neil Sinclair, Harvard University, United States
Integrated Photonics -
Andrew White, University of Queensland, Australia
Using Photons to Find Needles in a Haystack and Test Reality -
Emma Wollman, Jet Propulsion Laboratory, United States
Title to be Announced -
Tian Zhong, University of Chicago, United States
Enabling Long-distance Quantum Interconnect with Epitaxial Erbium Qubits and Spin-photon Interfaces -
Michal Parniak, University of Warsaw, Poland
Error-corrected Quantum Sensing with Rydberg Atoms