China Focus: China's computational power gains new strength with 255-detected-photon quantum computer (2024)

HEFEI, Oct. 12 (Xinhua) -- Chinese scientists unveiled a quantum computer prototype named "Jiuzhang 3.0" with 255 detected photons on Wednesday, once again pushing the boundaries of photonics quantum computing technology.

Led by the renowned Chinese quantum physicist Pan Jianwei, the research team has successfully accomplished this quantum computing feat, achieving a speed that is 10 quadrillion times faster in solving Gaussian boson sampling (GBS) problems compared to the world's existing fastest supercomputers.

Gaussian boson sampling, a classically intractable problem, was employed in this study to provide a highly efficient way of demonstrating quantum computational speedup in solving some well-defined tasks.

The study was published online in the journal Physical Review Letters on Wednesday Beijing Time.

Quantum computing is a groundbreaking mode of computation, calculating by orchestrating quantum bits in adherence to the principles of quantum mechanics. Nobel Laureate Richard Feynman first put forward the concept of quantum computers in 1981.

China's photonics quantum computer prototype, named "Jiuzhang," after the ancient Chinese mathematical masterpiece "Nine Chapters on the Mathematical Art," was built in December 2020, achieving quantum computational advantage with up to 76 detected photons.

"Jiuzhang" made China the second country in the world to achieve quantum computational advantage, also known as "quantum supremacy," indicating an overwhelming quantum computational acceleration that is currently not feasible for traditional computers.

Lu Chaoyang, a member of the research team and professor at the University of Science and Technology of China, said that a series of innovations, including a newly developed superconducting nanowire single-photon detection scheme with fiber loop-based configuration, increased the number of detected photons for "Jiuzhang 3.0" to 255, greatly improving the complexity of photonics quantum computing.

"By demultiplexing photons into time bins through delays, we've achieved capabilities of pseudo photon number resolving," Lu added.

According to the state-of-the-art exact classical simulation algorithm, "Jiuzhang 3.0" is a million times faster at solving GBS problems than its predecessor, "Jiuzhang 2.0." Moreover, the most complex samples of GBS that "Jiuzhang 3.0" can calculate in just one microsecond would take the world's fastest supercomputer, "Frontier," more than 20 billion years to complete.

Lu pointed out that, despite many upgrades and innovative achievements, "Jiuzhang 3.0" is still a long way from becoming a universal quantum computer.

"Universal quantum computers might require the manipulation of tens of millions of qubits and error correction capabilities. These are among the future challenges. The practical application of quantum computing is an ongoing relay race," Lu said.

In 2021, the team led by Pan developed the "Jiuzhang 2.0" with 113 detected photons and a 66-qubit programmable superconducting quantum computing system named "Zuchongzhi 2.1," making China the only country to achieve a quantum computational advantage in two mainstream technical routes -- one via photonics quantum computing technology and the other via superconducting quantum computing technology.

The global landscape for quantum computing is on an accelerated trajectory, where countries and tech behemoths, including IBM and Google, are engaged in a spirited race. Governments and related industries are also doubling down on research investments and policy support for quantum computing.

Highlighting the extraordinary parallel computing capability of quantum computers, Pan stated that quantum computing is poised, through specific algorithms, to offer enhanced computational power compared to traditional computers, especially in realms like cryptography, big data optimization, weather forecasting, material design and drug analysis.

The team noted that establishing quantum computational advantage requires great endeavor, with long-term competition between classical algorithms and quantum computing hardware.

They anticipate that this work will, on the one hand, stimulate more research on classical simulation algorithms, and on the other hand, through diligent efforts, gradually address various scientific and engineering challenges in quantum computing research. Ultimately, quantum computers will achieve computational power beyond the reach of classical computers, driving the advancement of science and technology.

China Focus: China's computational power gains new strength with 255-detected-photon quantum computer (2024)

FAQs

How powerful is China's quantum computer? ›

China's top quantum expert, Prof. Pan Jianwei, has developed a Jiuzhang quantum computer that he claims can perform certain kinds of AI-related calculations some 180 million times faster than the world's top supercomputer.

Did China beat Google to claim the world's most powerful quantum computer? ›

The Chinese team, based primarily at the University of Science and Technology of China in Hefei, reported their quantum computer, named Jiuzhang, is 10 billion times faster than Google's. A description of Jiuzhang and its feat of calculation was published Dec. 3 in the journal Science.

What is China's new quantum computer? ›

Origin Wukong” is the third-generation superconducting quantum computer launched by China. and, since its launch in January of this year, claimed multiple firsts for China, according to the news service.

Does NASA use quantum computer? ›

NASA's QuAIL team has extensive and experience utilizing near-term quantum computing hardware to evaluate the potential impact of quantum computing.

Is the human brain more powerful than a quantum computer? ›

Theorists believe your brain might contain 100 billion quantum bits, which would make your own brain more powerful than all the digital computers in the world combined.

Does Google own a quantum computer? ›

Astonishing capabilities of Google's quantum computer

Google's latest iteration of its quantum machine, the Sycamore quantum processor, currently holds 70 qubits. This is a substantial leap from the 53 qubits of its earlier version.

Is China ahead of the US in quantum computing? ›

In January, Origin Quantum Computing Technology reported that the majority of its overseas users were based in the U.S. Industry analysis backs this observation. In 2022, research and analysis company GlobalData said China was five years behind the U.S. in quantum technologies.

Who is winning in quantum computing? ›

Advances by IBM and a Harvard team in 2023 demonstrated that error correction is on the horizon and the era of quantum utility has arrived. In July 2023, IBM announced peer reviewed evidence from experiments that indicated the company had made strides in mitigating the errors that have long plagued quantum computing.

Is China a leader in quantum technologies? ›

China leads in quantum communications, lags behind in computing (where the United States excels), and matches the United States in sensing, excelling in market-ready tech, while the United States dominates high-impact areas. China claims over $15 billion in public quantum funding, far outpacing the United States.

Has anyone built a quantum computer yet? ›

Quantum computers are being manufactured and used. But they cannot yet make the large-scale calculations that are expected to be possible in the future. You may be one of those waiting for the quantum computer, the arrival of which we have been told is imminent for several years.

What is the most advanced computer in the world? ›

Currently top of the list, Frontier — built by supercomputing giant HPE Cray — became the first exascale computer in the world when it went online in 2022.

How many GHz is a quantum computer? ›

The device is based on a superconducting electronics approach called single-flux quantum-logic technology, which encodes data in the form of single magnetic fluctuations. The new device operates at speeds up to 40 gigahertz at 20 millikelvin.

What is more powerful than quantum computing? ›

Classical computers are much faster than quantum computers, but sometimes quantum computers have dramatically better algorithms. So, in our analogy, classical computers would always be better in open water, where both have access to the best route (algorithm).

How is China's quantum computer compared to Google? ›

Researchers from the Shanghai Artificial Intelligence Laboratory in China have demonstrated that their classical computing system can execute a complex computation faster and more energy-efficiently than Google's Sycamore machine.

Which country has the best quantum computer? ›

United States of America. The U.S. leads in quantum computing. It is home to advanced quantum research institutions and companies.

How powerful is a quantum computer? ›

- A 30-qubit-quantum computer would equal the processing power of a conventional computer that could run teraflops (trillions of floating-point operations per second). Todays typical desktop computers run at speeds measured in gigaflops (billions of floating-point operations).

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