Crypto’s first quantum attack will look like an unexplained breach: Quantus founder

cointelegraphPublished on 2026-08-10Last updated on 2026-08-10

Abstract

The first sign that quantum computing has broken modern cryptography may not be a high-profile theft, but a wave of unexplained crypto wallet breaches where attackers directly derive private keys from exposed public keys, leaving no forensic trace. Quantus Network founder Christopher Smith warns that "Q-day"—when quantum computers can break standard cryptography—will be difficult to detect, as advances in AI-assisted quantum algorithms are reducing the resources needed to attack blockchains' elliptic-curve cryptography. While much fear centers on Satoshi Nakamoto's dormant Bitcoin, Smith suggests the first targets could be military systems or even more valuable crypto targets like Tether's minting key, enabling an attacker to mint tokens out of thin air. Alternatively, attackers may quietly target exchange hot wallets or disguise quantum thefts as ordinary compromises. Timelines for Q-day remain uncertain. Recent developments, including Google accelerating its post-quantum migration to 2029, indicate the threat may arrive sooner than previously forecasted, especially with AI accelerating progress. Estimates range from a 50-50 chance by 2028 to a near certainty in the early 2030s. Despite the uncertainty, experts urge proactive migration to post-quantum cryptographic signatures to avert catastrophic damage.

The first sign that quantum computing has broken modern cryptography probably won’t be a splashy theft of Satoshi Nakamoto’s dormant Bitcoin. It could just be a wave of unrelated crypto wallet breaches with no trace of how an attacker did it, according to the founder of blockchain startup Quantus.

“When someone cracks your key, you don’t get a memo saying how they did it,” Christopher Smith, CEO and co-founder of Quantus Network, told Cointelegraph. A sufficiently powerful quantum computer could derive a private key from public keys exposed onchain, allowing an attacker to move funds without compromising a wallet, device or exchange’s internal systems.

This makes the arrival of “Q-day” — a hypothetical future moment when quantum computers become powerful enough to break standard public-key cryptography — unusually difficult to detect. In a theft involving a highly secure organization, “the only forensic evidence would be that there was no breach,” Smith said.

Smith’s warning comes as advances in quantum algorithms have reduced estimates of computing resources needed to attack the elliptic-curve cryptography used by major blockchains.

First target may not be Satoshi’s Bitcoin

Much of the fear around Q-day in crypto is what will happen if a quantum computer cracks the keys securing Satoshi Nakamoto’s estimated Bitcoin holdings, worth $63 billion at the time of writing, which could be suddenly dumped on the market.

However, Smith said the first targets may be military systems and state secrets, while crypto attackers could go for even more valuable keys.

“If I’m focusing on blockchain, what’s the single most valuable key? It’s probably Tether’s minting key,” Smith said. A quantum attacker could mint tokens out of thin air from an administrative wallet and dump them on the market before the issuer could respond, he added.

USDT is a multi-chain stablecoin, and some of the networks on which it is deployed are already actively working on post-quantum migration.

Related: Jim Cramer plans to sell his Bitcoin over quantum fears as BTC rises 1.6%

Another theory is that attackers make a quieter opening move.

Sean Cheetham, a security researcher at Blockchain Capital, said an attacker would more likely target hot wallets at exchanges “that aren’t going to ring alarm bells rather than stealing Satoshi’s coins.”

Smith said an attacker may disguise a quantum theft as an ordinary compromise.

“There’s an alternative scenario where they... have these plausible, deniable [explanations]: ‘Oh, somebody just lost their keys somehow,’” he said.

Q-day timeline hard to pin down

In March, Google accelerated its post-quantum migration timeline to 2029 as an AI-assisted breakthrough showed elliptic curve cryptography can be cracked with far fewer physical qubits than previously forecasted.

NGRAVE CEO Roy Blackstone said earlier quantum forecasts failed to account for the parallel development of AI.

“Most threat models assumed we had well into the next decade before quantum technology could realistically crack the cryptography securing public keys, but it did not account for how fast AI would develop alongside it.”

Despite growing urgency, there is little agreement on when a quantum computer capable of breaking modern cryptography will be ready.

Smith, whose company is developing a blockchain network aiming to be quantum-resistant from launch, said there was a “50-50” chance it could happen by 2028, arguing that continued AI-assisted improvements in quantum algorithms and hardware research are making forecasts less reliable.

Cheetham said the early 2030s “definitely is almost a certainty” and that an earlier arrival was “more of a trailing probability.”

Michael Coates, the Solana Foundation’s chief information security officer, declined to give an estimate during an earlier interview, saying “there’s no way to know.”

“If you talk to people in the industry, it is always five years away, and it’s been that way for 10 years or more now. Perhaps today people say it’s four years away,” he said. But the uncertainty is not a reason to delay, he added.

“Thankfully, blockchains aren’t waiting and have started migrating to post-quantum signatures,” said Blackstone. “The damage would be catastrophic if they didn’t.”

Magazine: How AI just dramatically sped up the quantum risk for Bitcoin

Trending Cryptos

Related Questions

QWhat, according to Quantus founder Christopher Smith, will be the first sign that quantum computing has broken modern cryptography in the context of crypto?

AAccording to Christopher Smith, the first sign will likely be a wave of unexplained crypto wallet breaches, where funds are moved without any trace of how the attacker gained access, because deriving private keys from exposed public keys leaves no forensic evidence of a traditional system breach.

QBesides Satoshi Nakamoto's Bitcoin, what potential high-value crypto target does Christopher Smith suggest a quantum attacker might prioritize?

AChristopher Smith suggests that Tether's minting key could be an even more valuable target. A quantum attacker could use it to mint unlimited USDT stablecoins out of thin air and dump them on the market before the issuer could respond.

QHow has the development of AI impacted the timeline for the quantum threat to cryptography, as mentioned in the article?

AThe development of AI has accelerated the threat timeline. AI-assisted breakthroughs have shown that elliptic curve cryptography can be cracked with far fewer physical qubits than previously forecasted, causing organizations like Google to speed up their post-quantum migration plans.

QWhat is the "Q-day" scenario that the article discusses, and why is it particularly difficult to detect?

A"Q-day" is a hypothetical future moment when quantum computers become powerful enough to break standard public-key cryptography. It is unusually difficult to detect because an attacker could derive a private key from a public key without breaching a system, leaving the only forensic evidence as "no breach" having occurred.

QAccording to security researcher Sean Cheetham, why might an attacker target exchange hot wallets before going after a high-profile target like Satoshi's coins?

ASean Cheetham suggests that an attacker would more likely target hot wallets at exchanges first because such thefts "aren’t going to ring alarm bells" as loudly as stealing Satoshi Nakamoto's iconic and massive Bitcoin holdings, allowing for a quieter initial move.

Related Reads

New Job in the Robotics Industry: A 'Bone Doctor' Earning 6,000 Yuan Monthly, Specializing in Treating Broken Limbs

A new job has emerged in the robotics sector: the "orthopedic surgeon" for robots, earning around 6,000 RMB per month by specializing in repairing robots and robotic dogs. As the number of robots explodes, with IDC projecting 18,000 humanoid robots shipped globally in 2025 and China's MIIT predicting over 100,000 units produced domestically in 2026, demand for maintenance and repair is rising. The repair process, as demonstrated by Zhao Xin, a former service industry worker turned self-taught repairman, involves diagnosing issues like joint noises, disassembly, and part replacement. The technical barrier is relatively low, often simpler than repairing drones, with basics learnable in a month. The real challenge is obtaining proprietary parts, which are monopolized by manufacturers, lack public schematics, and are expensive. Currently, third-party repair shops, like those run by Zhao Xin or Nanjing Kaogong Yunji's Fang Jinghua, offer cheaper (10-15% of robot price, 20-50% cheaper than OEM) and faster (one week vs. over a month) service, mainly for out-of-warranty units used in entertainment performances. However, repair volume remains low—just 1-3 robots/month for some shops—making it unsustainable as a primary business. Most repair shops rely on other revenue streams like training, drone repair, or leasing. Training programs are emerging, with courses from 8 to 40 days and fees from 5,000 to 30,000 RMB. Graduates often enter sales or operations roles. For pure repair jobs, salaries range from 6,000-8,000 RMB/month for beginners to over 10,000 RMB for experienced technicians. While companies like JD.com plan large-scale technician training, the robot repair market still awaits broader industry growth to become a fully viable standalone profession.

marsbit9m ago

New Job in the Robotics Industry: A 'Bone Doctor' Earning 6,000 Yuan Monthly, Specializing in Treating Broken Limbs

marsbit9m ago

Shenzhen Is Leading the Entire Nation in 'Getting Rich'

Shenzhen, emerging as a leader in China's innovation economy, is pioneering a novel model of regional development by creating and sharing significant capital wealth with cities across the country. In 2026, Shenzhen leads major Chinese cities in new IPOs, adding 26 listed companies. Notably, a substantial portion of these successful firms, operating in strategic sectors like semiconductors (e.g., Dapu Micro, HKC), industrial AI, and new energy materials, feature state-backed investment funds from various cities in their shareholder lists. These external investors, from Nanjing, Mianyang, Changsha, Gui'an, and others, are reaping enormous financial returns from early-stage investments. This trend stems from nationwide confidence in Shenzhen's unparalleled ecosystem for nurturing high-tech firms, supported by massive government-guided funds, a complete industrial chain, and mature capital markets. For other cities, particularly smaller ones, investing in Shenzhen's proven innovators offers a strategic alternative to costly and uncertain local cultivation of industries. Beyond capital gains, these investments often secure agreements for manufacturing bases to be established in the investor cities, fostering local industrial clusters—a "double benefit" of equity appreciation and industrial upgrading. This collaborative model, where Shenzhen focuses on R&D and headquarters functions while sharing growth via equity and decentralizing production, moves beyond traditional zero-sum regional competition. It replaces subsidy-based rivalry with market-driven, mutually beneficial partnerships. This logic of open collaboration and shared prosperity aligns with the core principles of APEC, whose 33rd Leaders' Meeting will be held in Shenzhen, highlighting the city's role as a microcosm of regional cooperation and innovation-led growth.

marsbit19m ago

Shenzhen Is Leading the Entire Nation in 'Getting Rich'

marsbit19m ago

Wall Street Morning Brief: Dismal Nonfarm Sparks Rate Cut Trading, Optical Interconnects Begin to Outshine Storage, 'Short Storage, Long Optics' Becomes New Battlefield

Wall Street Morning Report: Key takeaways from market movements and upcoming events. Weak U.S. July non-farm payrolls (-23K vs. +80K expected) significantly reduced expectations for a September Fed rate hike, boosting equities. All eyes are on Wednesday's CPI data for further direction. Geopolitical tensions in the Middle East pushed oil prices higher, while gold surged over 7% weekly. A notable sector rotation emerged within AI infrastructure, with a "short memory, long optics" trade gaining traction. Optical communication stocks like Coherent and Lumentum outperformed, while memory stocks (Seagate, Western Digital, SK Hynix) faced pressure amid concerns over peak pricing and ETF outflows. Software also rallied strongly (Palantir, Atlassian). Key stock moves: SpaceX surged ~23% over two days post-lockup expiration. Palantir jumped nearly 40% weekly on strong U.S. commercial growth. Nvidia rose over 11% weekly, with a reported major investment in AI data center power. Apple is testing ChangXin Memory chips for potential use in China-sold devices. Berkshire Hathaway resumed net stock buying, with Alphabet becoming its top holding. Upcoming focus: Key earnings from Lumentum, CoreWeave, Supermicro (Aug 12), Cisco, and Coherent (Aug 13) to test AI infrastructure demand. U.S. CPI and PPI data (Aug 12 & 14) crucial for Fed policy outlook. Major events include Tencent's earnings, Google's Pixel launch, and the SEC 13F filing deadline.

marsbit34m ago

Wall Street Morning Brief: Dismal Nonfarm Sparks Rate Cut Trading, Optical Interconnects Begin to Outshine Storage, 'Short Storage, Long Optics' Becomes New Battlefield

marsbit34m ago

Trading

Spot

Hot Articles

Discussions

Welcome to the HTX Community. Here, you can stay informed about the latest platform developments and gain access to professional market insights. Users' opinions on the price of S (S) are presented below.

活动图片