Headline: Starkware says first “quantum-safe” Bitcoin transaction was mined on mainnet — but it’s a stopgap, not a fix Starkware — the team behind Ethereum layer‑2 StarkNet — announced this week that it has successfully mined what it calls the first quantum‑safe Bitcoin transaction on the Bitcoin mainnet. The experiment tests a way to shield coins from future quantum attacks without changing Bitcoin’s consensus rules. What happened - Starkware researchers implemented “Quantum‑Safe Bitcoin” (QSB), a technique devised by researcher Avihu Levy and turned into a working mainnet transaction by engineer Tomer Giladi. - In a company blog post, Starkware wrote: “A quantum‑safe transaction was mined on the Bitcoin mainnet today that holds up against an adversary running a working quantum computer. Bitcoin holders now have a way to move coins into storage a quantum computer cannot open.” Why this matters - Bitcoin currently relies on elliptic‑curve cryptography. A sufficiently powerful quantum computer running Shor’s algorithm could theoretically recover private keys from exposed public keys and steal funds. - Protecting the protocol at large likely requires a consensus change — a soft fork (backward compatible) or a hard fork (not compatible) — which are politically and technically challenging. Starkware frames QSB as a practical tool to protect individual holdings now, without waiting for a network upgrade. How QSB works (technical highlights) - QSB adds a second lock to a transaction based on hash functions (which are considered more resilient to quantum attacks than elliptic curves today). - The method uses “signature grinding”: heavy off‑chain computation searches for a transaction hash that Bitcoin will accept as a properly formatted signature. Once found, the transaction includes the hash‑based lock that resists quantum key‑recovery. - Crucially, QSB does not change Bitcoin’s rules; it crafts transactions that are valid under current rules but add an extra, quantum‑resistant protection layer. Limitations and caveats - Starkware emphasizes QSB is not a protocol‑level cure: it protects specific transactions but does not make Bitcoin itself quantum‑safe. - It cannot protect addresses whose public keys are already exposed (for example, reused addresses). - The current implementation requires transactions to be submitted directly to miners rather than through standard mempool propagation. - Starkware CEO Eli Ben‑Sasson and others stress this is a stopgap and that a soft fork remains the preferable long‑term solution: “I still want Bitcoin to choose to do a soft fork and I expect we will get one,” Ben‑Sasson said. He added that the experiment should highlight the need to get serious about soft forks before quantum threats materialize. Context and urgency - Concerns about quantum vulnerability are growing: in June, Coinbase’s quantum advisory council estimated roughly 7 million BTC could be exposed because of address reuse and exposed public keys. - Starkware hopes QSB will provide reassurance that individual funds can be shielded immediately, while also sparking broader action to implement protocol‑level defenses. Bottom line This milestone demonstrates a clever, practical way to harden specific Bitcoin holdings against a future quantum adversary without changing consensus rules. But it’s not a panacea — the real solution many experts want remains a coordinated protocol upgrade (likely a soft fork) to add quantum resistance across the network. Starkware’s experiment is a useful stopgap and a call to act before the problem becomes urgent. Read more AI-generated news on: undefined/news