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Project 11将在明年使用Quantum Computer在破解比特币密钥最大的任何人提供1 BTC。
Quantum computing research firm Project Eleven has launched a competition to see just how much of a threat quantum computing currently poses to Bitcoin.
量子计算研究公司项目11发起了一项竞赛,以了解当前对比特币构成的威胁量子计算。
Launching the competition on April 16, Project Eleven said it is offering 1 Bitcoin (BTC) to whoever cracks the biggest chunk of a Bitcoin key using a quantum computer.
Eleven Project在4月16日举行的比赛中表示,它将为使用量子计算机裂解比特币密钥最大的人提供1个比特币(BTC)。
The firm said the purpose of the “Q-Day Prize” is to test “how urgent the threat” of quantum is to Bitcoin and to find quantum-proof solutions to secure Bitcoin over the long term.
该公司表示,“ Q-Day奖”的目的是测试“量子威胁的紧急威胁”是对比特币的,并找到量子量的解决方案,以确保长期确保比特币。
“10 million+ addresses have exposed public keys. Quantum computing is steadily progressing. Nobody has rigorously benchmarked this threat yet,” Project Eleven wrote on X.
“ 1000万+地址已经暴露了公共钥匙。量子计算正在稳步进步。还没有任何严格的基准标准这一威胁,” Project 11在X上写道。
More than 6 million Bitcoin — worth around $500 billion — could be at risk if quantum computers become powerful enough to crack elliptic curve cryptography (ECC) keys, Project Eleven said.
第十一项目说,如果量子计算机变得足够强大,可以破解椭圆曲线密码学(ECC)键,则超过600万比特币可能会面临风险。
Those wishing to participate can register as individuals or as a team and have until April 5, 2026, to complete the task. The prize winner will win 1 Bitcoin, currently worth $84,100.
那些希望参加的人可以注册为个人或团队,并且必须在2026年4月5日之前完成任务。获奖者将赢得1个比特币,目前价值84,100美元。
The aim is to run Shor's algorithm on a quantum computer to crack as many bits of a Bitcoin key as possible, acting as a proof-of-concept that the technique could scale to crack a full, 256-bit Bitcoin key once the necessary compute is available.
目的是在量子计算机上运行Shor的算法,以破解尽可能多的比特币钥匙,以证明该技术可以扩展以破解完整的256位比特币键,一旦有必要的计算。
“The mission: break the largest ECC key possible using Shor's algorithm on a quantum computer. No classical shortcuts. No hybrid tricks. Pure quantum power,” Project Eleven said.
“任务:使用Shor的算法在量子计算机上打破最大的ECC密钥。没有经典的快捷方式。没有混合技巧。纯量子功率,” Project eleven说。
“You don't need to break a Bitcoin key. A 3-bit key would be big news.”
“您不需要打破比特币钥匙。一个3位密钥将是大新闻。”
No ECC key used in real-world applications has ever been cracked, noted Project Eleven, adding that the winner could “go down in cryptography history.”
第十一项目指出,在现实世界应用程序中没有使用ECC密钥,并补充说,获胜者可以“在密码学历史上脱颖而出”。
Project Eleven noted that several online platforms offer quantum computing access, such as Amazon Web Services and IBM.
项目十一指出,几个在线平台提供量子计算访问,例如亚马逊Web服务和IBM。
Current estimates suggest that around 2,000 logical qubits (error-corrected) would be enough to break a 256-bit ECC key, Project Eleven noted.
目前的估计表明,大约有2,000个逻辑量子位(错误校正)足以打破256位ECC密钥。
IBM’s Heron chip and Google’s Willow can currently do 156 and 105 qubits — significant enough to cause concern, according to Project Eleven, which believes a 2,000-qubit quantum system could be developed within the next decade.
IBM的Heron Chip和Google的柳树目前可以进行156量和105个Quart,这足以引起人们的关注,这是第11个项目,该项目认为可以在未来十年内开发出2,000 Qubit的量子系统。
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