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Quantum computing will eventually challenge the encryption our digital economy relies on, but the solution already exists. BTQ's Sean Hackett explained that a decade of cryptographic research has solved the core problem: post-quantum cryptography is ready today. That view now has federal backing: the White House's updated National Security...

56,139 görüntüleme • 7 gün önce •via X (Twitter)

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How IIT Madras is Changing Global Security The End of Hacking? IIT Madras is spearheading India's push into quantum-secure communications through the IITM-C-DOT Samgnya Technologies Foundation, launched as the National Hub for Quantum Communication under the National Quantum Mission. This initiative aims to make communications "unhackable" by shifting from math-based encryption to physics-based security, countering future quantum computer threats. ​ The hub, inaugurated in December 2025 at IIT Madras Research Park, partners with C-DOT and is funded by the Department of Science and Technology (DST). It focuses on developing indigenous quantum hardware, QKD networks, quantum repeaters, and satellite-based systems to protect critical infrastructure like AI data centers and defense networks. Traditional encryption relies on complex math that quantum computers will crack in years. QKD uses quantum physics: any eavesdropping alters the quantum state, alerting the system instantly and burning the key. IIT Madras claims an edge in secure transmission over computing leaders like the US and China. ​ The hub builds real-world testbeds, subsidizes hardware for startups, trains experts, and links globally via IITM Global outposts. It positions India to lead in quantum-secure networks for sovereign AI and government use within five years. ​ IIT Madras also runs CyStar, a cybersecurity center advancing quantum security, AI model protection, and IoT defenses since 2024. This aligns with national goals for unhackable comms amid rising cyber threats. Credit : AIM Network.

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🚀 SEALSQ $LAES at Times Square — Leading the Future of Quantum & AI Security! We’re proud to share that SEALSQ was featured today on the Nasdaq Tower in Times Square, announcing that our CEO Carlos Moreira will deliver the Opening Keynote at IQT Quantum + AI 2025, taking place October 19–21 in New York City. 🎤 Keynote: “AI Meets Quantum: Building Unbreakable Post-Quantum Security” Carlos will explore how AI and Quantum Computing are converging to redefine cybersecurity and shape the next era of digital trust. He will also join Panel 8: CEO Roundtable, alongside top executives from Rigetti, ORCA, SEEQC, and Arqit, to discuss the business and technology strategies driving the quantum revolution. 🔐 During the event, SEALSQ will present updates on its groundbreaking Quantum Shield “QS7001” — a RISC-V-based post-quantum secure hardware platform — and the progress of its Common Criteria EAL5+ certification with Serma Labs. The QS7001 platform integrates Kyber and Dilithium (NIST-standardized post-quantum algorithms) with advanced hardware accelerators for low-latency, high-throughput encryption, ensuring robust protection for IoT, automotive, healthcare, and critical infrastructure systems. 🌐 With this innovation, SEALSQ enables partners to future-proof devices against both classical and quantum attacks, ensuring compliance, efficiency, and trust in a rapidly evolving digital landscape. 💬 “Quantum and AI represent both opportunity and risk. With the Quantum Shield QS7001 platform and our broader post-quantum roadmap, SEALSQ is building the security foundation required to protect critical infrastructure, connected devices, and human data against the threats of tomorrow.” — Carlos Moreira, CEO, SEALSQ 📍 Event Details: 🗓️ October 19–21, 2025 📍 New York City 🎤 Opening Keynote: “AI Meets Quantum: Building Unbreakable Post-Quantum Security” 👤 Speaker: Carlos Moreira, CEO, SEALSQ 💼 Panel 8: CEO Roundtable featuring Rigetti, ORCA, SEEQC, Arqit, and SEALSQ #SEALSQ #PostQuantum #AI #QuantumComputing #Cybersecurity #TimesSquare #Nasdaq #IQT2025 #Innovation #RISC-V #Kyber #Dilithium #FutureOfSecurity

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$IonQ Tennessee just allocated $20M to accelerate quantum computing - 🧵 Governor Bill Lee’s FY27 budget includes funding specifically designed to attract federal and private investment in quantum, targeting advanced manufacturing, life sciences, and logistics sectors. Why this matters: State-level quantum funding signals a shift from pure research to economic deployment. Tennessee isn’t funding university labs - they’re building infrastructure to attract quantum companies and create high-wage jobs. Tennessee already has Oak Ridge National Laboratory, one of the world’s premier quantum research facilities. Adding $20M in state support creates a complete ecosystem: research capability, government backing, workforce development, and commercial deployment pathways. The timing is perfect: Quantum companies with deployable systems can now tap into state partnerships, regional contracts, and workforce programs. This creates real commercialization opportunities beyond federal research grants. For context, IonQ already works with Oak Ridge and has the commercial systems ready to deploy. But this funding isn’t just about one company - it’s about Tennessee positioning itself as THE quantum hub in the Southeast, competing with Colorado, Maryland, and California. What to watch: When states start competing for quantum companies with actual budget allocations, it validates that quantum computing is becoming an economic sector, not just a science project. Expect more states to follow Tennessee’s lead in 2026. The quantum industry is transitioning from “interesting research” to “strategic economic investment” at the state government level. That’s a meaningful milestone. 🎯 #QuantumComputing #Tennessee #Innovation #IONQ #EconomicPolicy #TechIndustry

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First Principles Ep. 6 with Ron Rivest Long before the internet became a place to bank, transact, or build blockchains, Turing Award winner Ron Rivest helped solve a foundational problem: how can strangers communicate securely without first meeting to exchange a secret? Rivest tells the story of inventing RSA with Adi Shamir and Leonard Adleman, why digital signatures fascinated him even more than encryption, and how cryptographic hashes, government pressure, patents, and standards shaped the security infrastructure we rely on today. Rivest shares his unusually candid views on quantum computing, post-quantum security, and more. Hosted by Tim Roughgarden with Dan Boneh. 00:00 Intro: the two problems that could break modern cryptography 01:10 Why Ron Rivest’s work underpins the internet and blockchains 08:10 Before public-key cryptography, there was no theory of security 11:05 The open problem that led to RSA 13:55 The night Ron Rivest discovered the core idea behind RSA 17:55 Why digital signatures were the real breakthrough 19:14 The RSA challenge — and a prediction that was off by quadrillions of years 28:33 How government pressure shaped cryptographic standards 30:36 Designing the hash functions that made digital signatures practical 33:26 The Fiat–Shamir transformation, explained 38:04 Building a cryptography company before the web existed 42:31 Will quantum computers ever become powerful enough to break RSA? 48:02 The cryptography securing the internet, elections, and everyday life 50:11 What surprised Dan: Quantum giveth and quantum taketh away

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