EigenCloud Founder Claims Team Replicates 80% of Google’s Unpublished Quantum Breakthrough

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EigenCloud founder Sreeram Kannan said two team members recreated approximately 80% of Google’s unpublished quantum computing breakthrough, focusing on elliptic curve cryptography. Gautham Anant, an undergraduate, doubled the efficiency of quantum cryptographic circuits. Gajesh, an 18-year-old, achieved 80% results using a custom agent cluster. The work targets elliptic curve point addition, a critical step in Shor’s algorithm that threatens Proof of Work (PoW) systems like Bitcoin. Kannan launched the Quantum ECC Addition Challenge to invite optimization efforts. Future collaborations with Stanford’s Dan Boneh and Ethereum’s Justin Drake are planned for open mathematical challenges.
ME AI message: EigenCloud founder Sreeram Kannan tweeted that two of his team’s students reconstructed approximately 80% of Google’s unpublished quantum breakthrough over the weekend using AI agents. Undergraduate Gautham Anant improved existing quantum cryptography circuits by about 2x, while 18-year-old researcher Gajesh further elevated the results to match 80% of Google’s unpublished findings using a custom agent cluster. The achievement targets the elliptic curve point addition circuit, a core operation in Shor’s algorithm for breaking ECDSA—the signature scheme used by Bitcoin and other assets. Sreeram Kannan also announced the launch of the first public challenge, the Quantum ECC Addition Challenge, inviting more individuals and their agents to participate in optimization. Future collaborations with Stanford’s Dan Boneh and Ethereum Foundation’s Justin Drake will introduce additional open challenges in mathematics. Previously, Google’s Quantum AI team demonstrated that elliptic curve cryptography can be broken with far fewer resources than expected and verified the results using zero-knowledge proofs, though the specific algorithm remains unpublished. (Source: Foresight News)
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