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BEGIN:VEVENT
DTSTART;VALUE=DATE:20231222
DTEND;VALUE=DATE:20231223
DTSTAMP:20240318T130901Z
CREATED:20240318T125354Z
LAST-MODIFIED:20240318T130901Z
UID:104338-1703203200-1703289599@www.a3veen.nl
SUMMARY:2023 Quantum Threat Timeline Report - publication
DESCRIPTION:The global race to develop quantum computers has critical implications for cybersecurity and organizations must pay attention. \nMitigation of the quantum threat to cybersecurity requires a transition to cryptology that is resilient against quantum attacks – implemented carefully and not rushed – evaluated based on organizations’ specific shelf lives\, migration times and risk appetites. The 2023 Quantum Threat Timeline Report\, a collaboration between GRI and evolutionQ\, synthesizes 37 leading experts’ insights on the current state of quantum computing and the threat it poses for cybersecurity. This fifth installment in the annual reporting explores the many factors that affect the quantum threat timeline\, including the skyrocketing level of investment in quantum computing and related technologies. The good news is that new “quantum safe” cryptographic solutions exist that can safeguard critical data and systems. However\, transitioning to them is complex and requires substantial time to avoid pitfalls. This report quantifies the urgency for mitigating the looming quantum threat and will be of value to those responsible for managing cyber-risk. A proactive approach to the quantum-safe transition will prevent gaps in cybersecurity and reduce risks tied to hasty implementation. \nLinks:\n2023 Quantum Threat Timeline Report \nOpen brief aan de Europese Commissie: Quantumcomputers kunnen computerbeveiliging omzeilen
URL:https://www.a3veen.nl/event/2023-quantum-threat-timeline-report-publication/
CATEGORIES:IT,Kwantuminternet
END:VEVENT
BEGIN:VEVENT
DTSTART;VALUE=DATE:20240726
DTEND;VALUE=DATE:20240727
DTSTAMP:20240827T175547Z
CREATED:20240726T033059Z
LAST-MODIFIED:20240827T175547Z
UID:112328-1721952000-1722038399@www.a3veen.nl
SUMMARY:Quantum and coherent signal transmission on a single-frequency channel via the electro-optic serrodyne technique - publication
DESCRIPTION:Scientists have transmitted quantum and conventional internet data through the same fiber-optic channel\, meaning a future quantum internet could theoretically use existing infrastructure. \nScientists have successfully transmitted quantum data and conventional data through a single optical fiber for the first time. The research demonstrates that quantum data in the form of entangled photons and conventional internet data sent as laser pulses can coexist in the same fiber-optic cable. Most research into building a quantum internet has focused on the need for separate infrastructure or dedicated channels for quantum data to avoid interference from “classical” data. But this new “hybrid” network could pave the way for more efficient implementation of quantum communications by enabling quantum and conventional data to share the same infrastructure. The researchers revealed their findings in a study published July 26 in the journal Science Advances. \nLinks:\nQuantum data beamed alongside ‘classical data’ in the same fiber-optic connection for the 1st time
URL:https://www.a3veen.nl/event/quantum-and-coherent-signal-transmission-on-a-single-frequency-channel-via-the-electro-optic-serrodyne-technique-publication/
CATEGORIES:IT,Kwantuminternet
END:VEVENT
BEGIN:VEVENT
DTSTART;VALUE=DATE:20241202
DTEND;VALUE=DATE:20241203
DTSTAMP:20250311T130612Z
CREATED:20241202T124130Z
LAST-MODIFIED:20250311T130612Z
UID:121520-1733097600-1733183999@www.a3veen.nl
SUMMARY:Entangling Independent Particles by Path Identity - publication
DESCRIPTION:In the study ‘Entangling Independent Particles by Path Identity‘ scientists used PyTheus\, an AI tool that has been specifically created for designing quantum-optic experiments. \nThe authors of the paper initially set out to reproduce established protocols for entanglement swapping in quantum communications. However\, the AI tool kept producing a much simpler method to achieve quantum entanglement of photons. When particles such as photons become entangled\, they can share quantum properties — including information — regardless of the distance between them. This phenomenon is important in quantum physics and is one of the features that makes quantum computers so powerful. But the bonds of quantum entanglement have typically proven challenging for scientists to form. This is because it requires the preparation of two separate entangled pairs\, then measuring the strength of entanglement — called a Bell-state measurement — on a photon from each of the pairs. These measurements cause the quantum system to collapse and leave the two unmeasured photons entangled\, despite them never having directly interacted with one another. This process of “entanglement swapping” could be used for quantum teleportation. \nLinks:\nScientists discover simpler way to achieve Einstein’s ‘spooky action at a distance’ thanks to AI breakthrough — bringing quantum internet closer to reality
URL:https://www.a3veen.nl/event/entangling-independent-particles-by-path-identity-publication/
CATEGORIES:IT,Kwantuminternet
END:VEVENT
BEGIN:VEVENT
DTSTART;VALUE=DATE:20260317
DTEND;VALUE=DATE:20260318
DTSTAMP:20260605T141909Z
CREATED:20260317T031244Z
LAST-MODIFIED:20260605T141909Z
UID:141168-1773705600-1773791999@www.a3veen.nl
SUMMARY:Quantum Computing Military 2026: The Race for Unhackable - publication
DESCRIPTION:Quantum Computing Military 2026: The Race for Unhackable. \nThe dominant narrative about quantum computing is about breaking encryption. Shor’s algorithm\, the RSA threat\, the cryptopocalypse — the story has been told so many times it has acquired the comfort of familiarity. Nation-states are racing to build a quantum computer capable of breaking RSA-2048. Whoever gets there first reads everyone’s old messages. This is a real threat. It is also the distraction. The more consequential race is happening on the other side of the physics. Not quantum computing for breaking encryption\, but quantum communication for creating encryption so perfect it is mathematically impossible to intercept without detection. The technology is quantum key distribution\, and the three nations building operational military networks around it — China\, the United States\, and a lesser-known European consortium — are constructing a strategic advantage that\, once established\, cannot be reversed. \nLinks:\nQuantum Computing Military 2026: The Race for Unhackable
URL:https://www.a3veen.nl/event/quantum-computing-military-2026-the-race-for-unhackable-publication/
CATEGORIES:IT,Kwantuminternet,Maatschappij
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