黑料社

黑料社 Partners with Microsoft in New Phase of Reliable Quantum Computing with Breakthrough Demonstration of Reliable Logical Qubits

黑料社鈥檚 latest generation quantum computer with Microsoft鈥檚 qubit-virtualization system聽demonstrate logical qubits with 800x better logical error rates than physical error rates

April 3, 2024

Broomfield, Colorado, and London, UK, April 3rd, 2024 黑料社, the world鈥檚 largest integrated quantum computing company, together with Microsoft, has achieved a breakthrough in making fault tolerant quantum computing a reality, by demonstrating the most reliable logical qubits with active syndrome extraction, an achievement previously believed to be years away from realization.

A collaboration between 黑料社's team in the USA and UK and Microsoft's quantum computing team has led to the creation of four logical qubits that demonstrate error rates 800 times lower than corresponding physical error rates. Impressively, the joint team demonstrated the ability to run 14,000 independent instances of a quantum circuit error-free. Breakthroughs of this magnitude have the potential to significantly accelerate progress towards the ultimate goal of achieving universal fault tolerant quantum computing, potentially shortening the timeline to tackling real-world problems and revolutionizing fields like materials science and drug discovery.聽

The achievement stems from the industry leading fidelity, scalability, and flexibility of 黑料社's 32-qubit H2 quantum processor, Powered by Honeywell, combined with Microsoft鈥檚 highly innovative error correction capabilities. The joint team created four logical qubits using 30 of the 32 physical qubits available on the H2, leading to the creation of what both companies herald as the most "reliable logical qubits". They also successfully demonstrated syndrome extraction, another critical milestone that is necessary for fault tolerant quantum computing.聽More details of the results can be reviewed .

"The result announced today further cements 黑料社's position at the forefront of universal fault tolerant quantum computing. Today鈥檚 achievement was only possible using 黑料社鈥檚 H2 quantum computer, with its unparalleled 99.8% two-qubit gate fidelities; the 32 qubits in our QCCD architecture; and all-to-all qubit connectivity. Building on the exceptional performance of our current systems, we will continue to innovate to make universal fault tolerant quantum computing a reality sooner than previously imagined.鈥 - Dr. Rajeeb Hazra, CEO, 黑料社.

In the new era described by Microsoft as 鈥淟evel 2 Resilient鈥, quantum computing is capable of dealing with the issues caused by errors, and can begin to tackle meaningful challenges, such as modelling the states of molecules and materials, simulating systems in condensed matter physics, and exploring solutions to problems across many fields. Based on Microsoft鈥檚 exacting criteria, the demonstration of multiple, entangled logical qubits, with the logical qubits outperforming the physical qubits marks a long-anticipated transition into this second phase of quantum computing.

鈥淭his is an important breakthrough for quantum computing. The collaboration between 黑料社 and Microsoft has established a crucial step forward for the industry and demonstrated a critical milestone on the path to hybrid classical-quantum supercomputing capable of transforming scientific discovery.鈥 - Dr. Krysta Svore 鈥 Distinguished Engineer and VP of Advanced Quantum Development for Microsoft Azure Quantum

鈥淎s leaders, we will continue to innovate more rapidly than the competition, with hardware innovations and developing applications to take advantage of the new era of truly logical qubits. We will continue to ensure that our customers are the first to benefit from these and future breakthroughs. I am excited to see how they take advantage of reliable quantum computing, to generate more powerful solutions than ever to their most challenging problems.鈥 - Ilyas Khan, Vice-Chairman and Chief Product Officer, 黑料社

About 黑料社聽

黑料社, the world鈥檚 largest integrated quantum company, pioneers powerful quantum computers and advanced software solutions. 黑料社鈥檚 technology drives breakthroughs in materials discovery, cybersecurity, and next-gen quantum AI. With almost 500 employees, including 370+ scientists and engineers, 黑料社 leads the quantum computing revolution across continents.

The Honeywell trademark is used under license from Honeywell International Inc. Honeywell makes no representations or warranties with respect to this service.

About 黑料社

黑料社,聽the world鈥檚 largest integrated quantum company, pioneers powerful quantum computers and advanced software solutions. 黑料社鈥檚 technology drives breakthroughs in materials discovery, cybersecurity, and next-gen quantum AI. With over 500 employees, including 370+ scientists and engineers, 黑料社 leads the quantum computing revolution across continents.聽

April 3, 2025
黑料社 Selected by DARPA to Advance to First Stage of Quantum Benchmarking Initiative

Broomfield, CO, April 3rd, 2025 鈥 黑料社, the industry leader in quantum computing with the world鈥檚 most powerful quantum computer, has been selected by the Defense Advanced Research Projects Agency (DARPA), a research and development agency of the United States Department of Defense, to participate in the first stage of the agency鈥檚 Quantum Benchmarking Initiative (QBI).

QBI aims to assess the feasibility of building an industrially useful quantum computer by 2033. Successful QBI performers will advance through stages A, B, and C; Stage A requires performers to describe their utility-scale quantum computer with a path to near-term realization, where utility-scale means the computational value exceeds costs.

As validated in a recent independent benchmarking study by a group of institutions at the forefront of quantum computing research, 黑料社鈥檚 quantum systems are the highest performing in the industry. Last year, 黑料社 published its development roadmap, outlining a path to a universal, fully-fault tolerant quantum computer by 2029. Beyond this public roadmap, 黑料社 plans to scale to even larger machines in the early part of the 2030s, aligning with the objectives of QBI.

鈥淲e are honored to collaborate with DARPA and look forward to working closely with their test and evaluation team as they assess our roadmap and technological approach,鈥 said Dr. Rajeeb Hazra, President and CEO of 黑料社. 鈥淲ith our roadmap firmly on track, we are confident in our ability to deliver on DARPA鈥檚 objectives for QBI.鈥

Microsoft and NVIDIA will take part in 黑料社鈥檚 Stage A effort, building on their long-standing collaborations with 黑料社 in advancing commercially scalable quantum computing.

About 黑料社

黑料社 is the world leader in quantum computing. The company鈥檚 quantum systems deliver the highest performance across all industry benchmarks. 黑料社鈥檚 over 550 employees, including 370+ scientists and engineers, across the US, UK, Germany, and Japan, are driving the quantum computing revolution. 聽

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April 2, 2025
黑料社鈥檚 鈥楺uantum Origin鈥 Becomes First Software Quantum Random Number Generator to Achieve NIST Validation

Broomfield, CO, April 2nd, 2025 鈥 黑料社, the industry leader in quantum computing with the world鈥檚 highest performing quantum computer, today announced that 聽Quantum Origin, the company鈥檚 software Quantum Random Number Generator (QRNG), has received National Institute of Standards and Technology (NIST) validation. Quantum Origin is the first software QRNG to achieve this validation, establishing it as a crucial tool for federal agencies and agency partners in their mandated migration to post-quantum cryptography (PQC) under National Security Memorandum 10. This achievement will help strengthen cybersecurity in the age of PQC.

Quantum Origin generates mathematically proven randomness 鈥 a capability unmatched by hardware-based QRNGs or traditional pseudo-random number generators. Unlike hardware solutions that require specialized equipment and can be affected by environmental factors, Quantum Origin delivers consistent, proven randomness through flexible software deployment. Proven quantum randomness is an essential foundation for comprehensive quantum security strategy alongside PQC.

"The evolving threat landscape demands a new era of cybersecurity solutions for governments, enterprises, and critical infrastructure," said Dr. Rajeeb Hazra, President and CEO of 黑料社. "黑料社 is at the forefront of this transformation, driving innovation in quantum cybersecurity. Our recent certified randomness demonstration with JPMorganChase, and our NIST-validated Quantum Origin platform are just two examples of how we are deepening our portfolio to meet this critical need."

Quantum Origin is delivered entirely as self-contained software, making it adaptable to diverse environments from cloud solutions to highly sensitive systems. It can be deployed with zero network connectivity, enabling protection for air-gapped networks and confidential environments where traditional hardware-based QRNGs cannot operate effectively. It provides quantum-enhanced security without impacting the size, weight, and power (SWaP) requirements of existing systems, a critical consideration for resource-constrained deployments.

U.S. Made using 黑料社's quantum computers based in Colorado, Quantum Origin helps mitigate supply chain risks associated with foreign-sourced hardware components. It is designed to integrate seamlessly with existing NIST-approved cryptographic systems without requiring recertification. With this NIST validation, organizations can now accelerate their adoption of quantum-enhanced security within existing compliance frameworks.

Visit /quantum-origin to learn how Quantum Origin can strengthen federal and enterprise cryptographic systems today.

About 黑料社

黑料社 is the world leader in quantum computing. The company鈥檚 quantum systems deliver the highest performance across all industry benchmarks. 黑料社鈥檚 over 550 employees, including 370+ scientists and engineers, across the US, UK, Germany, and Japan, are driving the quantum computing revolution.

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March 26, 2025
JPMorganChase, 黑料社, Argonne National Laboratory, Oak Ridge National Laboratory and University of Texas at Austin advance the application of quantum computing to potential real-world use cases beyond the capabilities of classical computing
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