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hamadryad    
n. 树神,印度产毒蛇之一种

树神,印度产毒蛇之一种

hamadryad
n 1: the nymph or spirit of a particular tree
2: large cobra of southeastern Asia and the East Indies; the
largest venomous snake; sometimes placed in genus Naja [synonym:
{hamadryad}, {king cobra}, {Ophiophagus hannah}, {Naja
hannah}]


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  • RSA-2048 Is No Longer Safe: What the Quantum Breakthrough Means for . . .
    Upgrade Key Sizes Move from RSA-2048 to RSA-4096 or stronger While not quantum-safe, it increases the cost and complexity of any attack Adopt Elliptic Curve Cryptography (ECC) ECC provides strong security with smaller key sizes and better performance It too is vulnerable to quantum attacks but offers greater efficiency for now
  • Breaking RSA encryption just got 20x easier for quantum computers
    New research shows that RSA-2048 encryption could be cracked using a one-million-qubit system by 2030, 20x faster than previous estimates Here’s what it means for enterprise security
  • Quantum Decryption Breakthrough: RSA-2048 Now Vulnerable Under 1 . . .
    The quantum decryption landscape has shifted dramatically In 2019, breaking RSA-2048 encryption required an estimated 20 million noisy qubits By May 2025, Craig Gidney’s research demonstrates it can now be done with under 1 million qubits—a 95% reduction due to algorithmic advancements, not hardware improvements Key Resources: Gidney’s Paper on arXiv Y2Q: The Breach You’re Already
  • Google Researcher Lowers Quantum Bar to Crack RSA Encryption
    A new study from Google Quantum AI estimates that breaking RSA-2048 encryption could be achieved in under a week using fewer than one million noisy qubits—sharply reducing previous resource estimates The analysis relies on algorithmic improvements and efficient system designs, including approximate arithmetic and compressed error-correction layouts, to lower the number of qubits needed
  • New Google Research Shows RSA 2048 Could Be Broken Sooner Than Expected
    Google Quantum AI’s latest research shows RSA 2048 may be broken sooner than expected, making the shift to post-quantum cryptography a priority for every organization
  • Quantum Computing Threat Timeline: When RSA 2048 May Be Broken
    A detailed look at the quantum computing threat timeline, covering probability forecasts, regulatory deadlines, technical breakthroughs, and practical steps for migrating to post‑quantum cryptography
  • Quantum Breakthrough Slashes Qubit Needs for RSA-2048 Factoring
    A new research preprint by Google Quantum AI scientist Craig Gidney has dramatically lowered the estimated resources needed to break RSA-2048 encryption using a quantum computer Gidney’s May 2025 paper, “How to factor 2048 bit RSA integers with less than a million noisy qubits,” argues that a fault-tolerant quantum computer with under 1 million qubits could factor a 2048-bit RSA key in
  • Google Research Finds 2048-bit RSA Encryption Vulnerable to Quantum Threats
    Google has already begun adopting newer cryptographic standards to prepare for the quantum future, and the National Institute of Standards and Technology has advocated for a shift away from vulnerable cryptographic systems by 2030 However, Google’s study suggests that this timeline may need reevaluation and acceleration
  • Breaking RSA Encryption: Quantum Hype Meets Reality (2022-2025)
    After all, if RSA-2048 could indeed be cracked with only hundreds of qubits, and companies like IBM already had chips of that scale, the implication was staggering
  • NIST Announces the End of RSA and ECDSA | Joseph Bugeja
    In a significant shift for cyber security, NIST has announced the deprecation of RSA, ECDSA, and EdDSA encryption algorithms by 2030, with a full disallowance by 2035 This transition, outlined in the NIST IR 8547 document (currently in draft), is driven by the growing quantum threat and sets a clear timeline for organizations to update their cryptographic systems





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