$STRK StarkWare Executes Quantum Resistant Transaction on Bitcoin Mainnet Without a Hard Fork
StarkWare has successfully executed a Bitcoin transaction using a quantum-resistant solution (QSB) on the mainnet, without requiring a soft fork or hard fork.
🔸 The transaction consumed 10,000 Satoshis and was processed via the $MARA Foundation's Slipstream service; due to its non-standard format, it could not be propagated through the public mempool.
🔸 QSB utilizes a quantum resistant hash based scheme, mitigating the risk of quantum attacks involving signature forgery. However, it requires users to proactively move their funds and cannot protect assets for which the public key has already been exposed.
👉 This represents an intriguing technical milestone for StarkWare, demonstrating that quantum resistant measures can be applied to Bitcoin without altering consensus rules. Nevertheless, the solution necessitates proactive asset migration and entails high computational costs (approximately $150–$200). StarkWare's CEO continues to advocate for a protocol level implementation via a soft fork. This serves as evidence that the community is actively seeking ways to safeguard Bitcoin against the threat of quantum computing.
💬 Do you think the $BTC community will soon reach a consensus to integrate quantum resistant signatures via a soft fork?
News is for reference, not investment advice. Please read carefully before making a decision.
StarkWare has successfully executed a Bitcoin transaction using a quantum-resistant solution (QSB) on the mainnet, without requiring a soft fork or hard fork.
🔸 The transaction consumed 10,000 Satoshis and was processed via the $MARA Foundation's Slipstream service; due to its non-standard format, it could not be propagated through the public mempool.
🔸 QSB utilizes a quantum resistant hash based scheme, mitigating the risk of quantum attacks involving signature forgery. However, it requires users to proactively move their funds and cannot protect assets for which the public key has already been exposed.
👉 This represents an intriguing technical milestone for StarkWare, demonstrating that quantum resistant measures can be applied to Bitcoin without altering consensus rules. Nevertheless, the solution necessitates proactive asset migration and entails high computational costs (approximately $150–$200). StarkWare's CEO continues to advocate for a protocol level implementation via a soft fork. This serves as evidence that the community is actively seeking ways to safeguard Bitcoin against the threat of quantum computing.
💬 Do you think the $BTC community will soon reach a consensus to integrate quantum resistant signatures via a soft fork?
News is for reference, not investment advice. Please read carefully before making a decision.
