Quantum breakthrough slashes qubits needed to crack RSA encryption

Researchers have reduced the quantum computing power required to break the widely used RSA encryption algorithm by a factor of ten, to about 100,000 qubits. This advancement builds on prior work and highlights growing vulnerabilities in current security systems. However, significant engineering challenges persist in building such machines.

The RSA algorithm, a cornerstone of secure online banking and communications since the 1990s, relies on the difficulty of factoring large numbers into their prime components. Quantum computers have long posed a theoretical threat to this method, but practical implementation seemed distant due to the immense resources required.

Progress has accelerated in recent years. In 2019, Craig Gidney at Google Quantum AI lowered the qubit threshold from 170 million to 20 million. By 2025, Gidney further reduced it to under a million. Now, Paul Webster and colleagues at Iceberg Quantum in Australia have pushed it down to approximately 100,000 qubits, using algorithmic improvements and a qubit arrangement called qLDPC code. This code allows qubits to connect over longer distances, boosting information density.

For superconducting qubits, like those developed by IBM and Google, the team estimates that 98,000 qubits could crack common RSA encryption in about a month. Achieving the same in a day would demand 471,000 qubits. Several firms target hundreds of thousands of qubits within the decade, though error rates and speed matter more than the underlying technology.

Experts caution on feasibility. "These stricter demands make the hardware harder to make, and making the hardware is already the hardest part," Gidney noted. Scott Aaronson at the University of Texas at Austin expressed reservations about engineering distant qubit connections. IBM views qLDPC codes as a "cornerstone" of its systems but offered no specifics on this scheme.

Alternative approaches using cold atoms or ions enable easier long-range links but operate slower, potentially requiring millions of qubits for RSA breaking. Lawrence Cohen of Iceberg Quantum urged vigilance: "I think it’s important to never be conservative with the timelines... it’s always much, much better to err on the side of this could very much happen sooner rather than later."

Beyond encryption, the method could enhance simulations of quantum materials and chemistry. The findings appear in arXiv DOI: 10.48550/arXiv.2602.11457.

Makala yanayohusiana

Experts at the Q2B Silicon Valley conference in December hailed significant advances in quantum computing hardware, describing the progress as spectacular despite remaining challenges. Leaders from science and industry expressed optimism about achieving industrially useful, fault-tolerant devices in the coming years. Applications for health, energy, and scientific discovery are also gaining traction.

Imeripotiwa na AI

A new report warns that adversaries are harvesting encrypted data today for future decryption using quantum computers, posing trillions in economic risks to banks. The Citi Institute estimates a single such attack could jeopardize $2 trillion to $3.3 trillion of U.S. GDP. Financial institutions must accelerate post-quantum preparations amid rising cyberattacks.

Scientists have created the first quantum battery integrated into a quantum computer using superconducting qubits. This experiment demonstrates faster charging through quantum interactions compared to classical methods. The development could pave the way for more efficient quantum technologies.

Imeripotiwa na AI

Researchers have produced the most intricate time crystal to date using an IBM superconducting quantum computer. This two-dimensional quantum material repeats its structure in time, cycling through configurations indefinitely. The achievement advances understanding of quantum systems and their potential for material design.

Jumanne, 3. Mwezi wa tatu 2026, 19:32:01

Phantom codes could reduce errors in quantum computers

Jumanne, 24. Mwezi wa pili 2026, 22:18:02

Researchers discover loophole enabling encrypted quantum cloning

Alhamisi, 5. Mwezi wa pili 2026, 20:47:41

Chinese scientists achieve 100km tamper-proof quantum communication with single atoms

Jumapili, 1. Mwezi wa pili 2026, 17:57:03

Ethereum Foundation elevates post-quantum security to strategic priority

Jumatatu, 26. Mwezi wa kwanza 2026, 22:00:39

Distant entangled atoms boost precision in quantum measurements

Jumatano, 14. Mwezi wa kwanza 2026, 21:02:21

Chinese military developing over 10 quantum warfare weapons

Jumatatu, 12. Mwezi wa kwanza 2026, 09:33:30

Quantum computers may sharpen exoplanet images

Alhamisi, 8. Mwezi wa kwanza 2026, 05:17:54

Some quantum computers may need more power than supercomputers

Jumatatu, 5. Mwezi wa kwanza 2026, 12:03:48

Google shows quantum contextuality boosts computing power

Ijumaa, 12. Mwezi wa kumi na mbili 2025, 02:07:35

Qubits break quantum limit to encode information longer

 

 

 

Tovuti hii inatumia vidakuzi

Tunatumia vidakuzi kwa uchambuzi ili kuboresha tovuti yetu. Soma sera ya faragha yetu kwa maelezo zaidi.
Kataa