Microsoft has presented an innovator <a target="_blank" href="https://www.wsj.com/tech/microsoft-claims-creation-of-new-state-of-matter-in-quantum-computing-breakthrough-2c10f5ac” target=”_blank” rel=”noopener nofollow”>Quantum computing technology That has the potential to transform the future of bitcoin and cryptography.
The technological giant announced the Majorana 1 chip, a step that changes the game towards the creation of a quantum computer at a utility scale. While this innovation has great potential, ask bitcoin's long -term security questions.
Currently, experts are debating potential risks and if the cryptographic sector is ready for a quantum future.
A new state of matter in quantum computing
Microsoft's research team claims to have discovered a novel <a target="_blank" href="https://economictimes.indiatimes.com/tech/technology/ettech-explainer-microsofts-new-state-of-matter-chips-offer-a-quantum-leap-in-tech/articleshow/118427051.cms?from=mdr#google_vignette” target=”_blank” rel=”noopener nofollow”>state of matter known as a “topological superconductor.” This unusual phenomenon, which is crucial for Majorana 1 semiconductor, allows more stable and errors.
The qubits, the fundamental units of quantum computing, have previously suffered error rates that hindered large -scale applications.
Microsoft aims to reduce error rates by a 1,000 factor by effectively demonstrating its topological qbit, compared to the previous quantum approaches. The company believes that this will bring quantum computing at a utility scale, potentially in the next decade. New borders in artificial intelligenceMaterial science and, too much, cryptography could be inaugurated by this technology.
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Microsoft's new state of matter is a quantum threat to bitcoin https://t.co/ozdkacbnhi
– Protos (@Protas) <a target="_blank" href="https://twitter.com/Protos/status/1892645932866413006?ref_src=twsrc%5Etfw” rel=”nofollow noopener” target=”_blank”>February 20, 2025
Bitcoins encryption threat
bitcoin mines depend on SHA-256 and use the digital signature algorithm of the elliptical curve (ECDSA) to ensure transactions. These systems are intended to be almost impervious to access conventional computers. However, quantum computers could reverse that.
Yeah Microsoft quantum jump Continue, experts fear that algorithms like Shor's and Grover will one day decipher bitcoin encryption. Shor's method, in particular, can solve the mathematical challenges that support ECDSA, thus exposing bitcoin's wallets to theft.
While today's quantum devices remain far from this potential, rapid improvements suggest that the risk could become the next decade.
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The timeline and response of the Microsoft industry
Microsoft has indicated that it intends to build a totally operational quantum computer system by 2030. The Majorana 1 chip represents an important milestone, but considerable obstacles remain. The company's roadmap involves improving QBIT technology, hardware climbing and developing an effective correction of quantum errors.
Cryptocurrency experts are now considering quantity resistant encryption methods as a solution. Some Blockchain projects are already working in the encryption after the quanto to keep digital assets safe from hacks in the future. However, the transition <a target="_blank" href="https://www.coingecko.com/en/coins/bitcoin” target=”_blank” rel=”noopener nofollow”>bitcoin to a quantum security framework would require a global consensus and careful execution to maintain the integrity of the network.
What follows bitcoin?
While Microsoft's progress is not an immediate threat, bitcoin's long -term security debate has promoted. Quantum computing is still in its early stages, but the rapid rhythm of research suggests that the cryptographic sector cannot afford complacency.
The cryptographic community has a crucial question: when should preparations begin for a future resistant to quantity? If the projections are correct, the next five to 10 years will be critical to determine if the largest cryptocurrency in the world is still safe against enormous technological progress.
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