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X-WR-CALNAME:QPIC1550 Project
X-ORIGINAL-URL:https://qpic1550-project.eu
X-WR-CALDESC:Events for QPIC1550 Project
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TZID:Europe/Zurich
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DTSTART:20250330T010000
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BEGIN:VEVENT
DTSTART;VALUE=DATE:20260824
DTEND;VALUE=DATE:20261004
DTSTAMP:20260724T085039Z
CREATED:20260311T120153Z
LAST-MODIFIED:20260724T085039Z
UID:10000032-1787529600-1791071999@qpic1550-project.eu
SUMMARY:QCrypt Ottawa
DESCRIPTION:QCrypt 2026 is the 16th edition of the yearly international scientific conference presenting last year’s top results in quantum cryptography.
URL:https://qpic1550-project.eu/event/qcrypt-ottawa/
LOCATION:The University of Ottawa\, Canada
ATTACH;FMTTYPE=image/png:https://qpic1550-project.eu/wp-content/uploads/2026/03/QCrypt2026-Logo-1-scaled.png
END:VEVENT
BEGIN:VEVENT
DTSTART;VALUE=DATE:20260909
DTEND;VALUE=DATE:20260912
DTSTAMP:20260703T092732Z
CREATED:20260703T092732Z
LAST-MODIFIED:20260703T092732Z
UID:10000040-1788912000-1789171199@qpic1550-project.eu
SUMMARY:ESTC 2026
DESCRIPTION:The 11th IEEE Electronics System-Integration Technology Conference (IEEE ESTC 2026) is the premier international event in the field of electronics packaging and system integration. The conference is organised every two years in Europe and is supported by IEEE-EPS in association with IMAPS Europe.\nQPIC1550 partner Tyndall National Institute will present “Cryogenic Edge‑coupling Packaging Method of Photonic Chips using Annealed Adhesive.
URL:https://qpic1550-project.eu/event/estc-2026/
LOCATION:Helsinki\, Finland
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BEGIN:VEVENT
DTSTART;VALUE=DATE:20260920
DTEND;VALUE=DATE:20260925
DTSTAMP:20260730T081801Z
CREATED:20260311T120842Z
LAST-MODIFIED:20260730T081801Z
UID:10000033-1789862400-1790294399@qpic1550-project.eu
SUMMARY:ECOC 2026
DESCRIPTION:ECOC\, the European Conference on Optical Communications\, is the largest and most prestigious event on optical communications in Europe and the second largest worldwide. It brings together researchers from industry and academia to discuss advances and explore future trends that will drive scientific progress and economic growth. \nThis year\, two submissions from UWA within QPIC1550 were accepted as oral presentations: \n\n“Towards Scalable Quantum Clock Synchronisation Networks with Low-Cost Single-Photon Avalanche Detectors and High-Brightness Photonic Integrated Entangled Pair Sources”\, presenting recent progress on quantum clock synchronisation using QPIC1550 devices\, including MRR‑based entangled‑pair sources.\n“Quantum Readout based on Silicon Photonic Integrated Circuits for Enhanced Security”\, showcasing advances in quantum readout for enhanced security\, leveraging the QPIC1550 mesh platform for PUF‑related research.
URL:https://qpic1550-project.eu/event/ecoc-2026/
LOCATION:FYCMA\, Malaga\, Spain
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BEGIN:VEVENT
DTSTART;VALUE=DATE:20261004
DTEND;VALUE=DATE:20261010
DTSTAMP:20260311T121451Z
CREATED:20260311T121451Z
LAST-MODIFIED:20260311T121451Z
UID:10000034-1791072000-1791590399@qpic1550-project.eu
SUMMARY:High-dimensional quantum systems Workshop
DESCRIPTION:Qubits\, the quantum counterparts of classical bits\, lie at the heart of quantum information. However\, in recent years\, the use of qudits\, i.e.\, high-dimensional quantum systems\, has proven to offer significant advantages in certain quantum information protocols. Indeed\, the extended Hilbert space of qudit systems enables an increased information capacity per quantum carrier and enhanced security in quantum cryptographic protocols. Moreover\, their robustness to noise and decoherence makes them particularly attractive for practical applications in various quantum information protocols. \nThis workshop aims to bring together leading experts\, both theorists and experimentalists\, to explore the applications of high-dimensional systems in the broad domain of quantum information. Specifically\, the objectives of this workshop are: \n– To investigate the theoretical and experimental advantages of qudits over qubits in quantum information protocols.\n– To explore novel applications leveraging high-dimensional systems for tasks such as entanglement swapping\, quantum teleportation\, or other qudit-based techniques.\n– To discuss the challenges in the generation and detection of high-dimensional quantum states.\n– To foster collaborations between theorists and experimentalists to bridge the gap between theoretical proposals and practical realizations.
URL:https://qpic1550-project.eu/event/high-dimensional-quantum-systems-workshop/
LOCATION:Benasque Science Center
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