Back to News
quantum-computing

PsiQuantum and Airbus Collaborate on Fault-Tolerant Quantum Algorithms for Aerospace - The Quantum Insider

Google News – Quantum Computing
Loading...
3 min read
0 likes
⚡ Quantum Brief
PsiQuantum and Airbus are collaborating under Airbus’s QuLAB project to develop fault-tolerant quantum algorithms for aerospace, focusing on complex fluid mechanics problems. A new joint paper introduces a quantum lattice Boltzmann algorithm to simulate incompressible fluid flows, validated against aircraft aerodynamics benchmarks, demonstrating real-world potential for quantum-enhanced CFD. The partnership leverages PsiQuantum’s 2025-launched Construct software suite, designed to optimize algorithms for future fault-tolerant quantum computers, ensuring aerospace readiness for utility-scale quantum computing. Researchers will present findings at the AIAA SciTech 2026 Forum, highlighting quantum computing’s potential to revolutionize aerodynamic drag, impact modeling, and vibration analysis in aerospace. PsiQuantum’s Chief Business Officer emphasized the collaboration’s role in preparing industries for fault-tolerant quantum computers, calling it a “game-changer” for aerospace innovation.
AI Audio Summary
0:00 / 0:00
Click to play
quantum computing images.jpg
Quantum News · Media Library

PRESS RELEASE — PsiQuantum announced today that the company is collaborating with Airbus, Europe’s largest aeronautics and space company, to advance applications in aerospace for fault-tolerant quantum computers. Under the QuLAB project at Airbus, the two companies are combining their expertise to develop and evaluate quantum algorithms for complex problems in fluid mechanics – illustrating the promise of fault-tolerant quantum computing for aerospace solutions. In a new paper, “Simulating Non-Trivial Incompressible Flows With a Quantum Lattice Boltzmann Algorithm,” researchers from PsiQuantum and Airbus present an application of fault-tolerant quantum computing to solve incompressible fluid flows under realistic conditions in computational fluid dynamics (CFD). Drawing from the theoretical framework developed by the same team in an additional paper, “An End-To-End Quantum Algorithm for Nonlinear Fluid Dynamics With Bounded Quantum Advantage,” the approach is built on a combination of methods for preparing and ultimately performing the computation on a fault-tolerant quantum computer. The paper’s approach is validated on several benchmark problems for aircraft aerodynamics. PsiQuantum shared more information about both papers and their findings in a new blog post today. Additionally, researchers from PsiQuantum will present this week at the American Institute of Aeronautics and Astronautics (AIAA) SciTech 2026 Forum in Orlando, Florida. “As PsiQuantum prepares to build and deploy the world’s first fault-tolerant quantum computers, we are working closely with world-leading companies to ensure they are prepared to take full advantage of this technology,” said Alexander Kolks, Chief Business Officer at PsiQuantum. “Our partnership with Airbus underscores quantum computing’s game-changing potential for the aerospace industry—and our shared commitment to collaborate at the leading edge.” Simulating quantum chemistry and partial differential equations (PDEs) is critical for modeling an important range of chemical and physical systems, including for common and complex applications in aerospace. However, large-scale computational resources are frequently insufficient for all the simulations that researchers want to perform. Fault-tolerant quantum computers promise to model and simulate aerodynamic drag, impact modeling, and vibration analysis, delivering significant new advantages for companies across the aerospace industry. Once deployed, a fault-tolerant quantum computer could drastically improve the speed, scale, and accuracy of these critical simulations, potentially transforming the production and performance of aircraft and other aerospace systems. As the world’s first fault-tolerant quantum computers are built and deployed, taking full advantage of their game-changing capabilities will require algorithms that are uniquely optimized for these systems. Reflecting the urgent need to ensure companies are prepared for the advent of utility-scale quantum computing, PsiQuantum launched Construct, the company’s software suite for designing, developing, and optimizing fault-tolerant quantum algorithms, in September 2025. PsiQuantum’s continuing partnership with Airbus illustrates the consequential opportunities for companies, especially firms in the aerospace industry, to help lay the groundwork for the arrival of utility-scale quantum computing. Keep track of everything going on in the Quantum Technology Market. hbspt.forms.create({ portalId: "7697776", formId: "bb678241-852f-447e-b9b3-fdc974f72f81", region: "na1", onFormReady: function($form) { const conversionPageField = $form.find('input[name="conversion_page"]'); if (conversionPageField.length) { conversionPageField.val(window.location.href); } const verticalField = $form.find('input[name="vertical"]'); if (verticalField.length) { verticalField[0].value = 'Quantum'; } } }); One of our team will be in touch to learn more about your requirements, and provide pricing and access options.

Read Original

Tags

aerospace-defense
partnership
psiquantum
quantum-advantage
quantum-algorithms
quantum-computing
quantum-investment

Source Information

Source: Google News – Quantum Computing

Discussion

0 professional contributions

Sign in to join this professional discussion.

Be the first to add a constructive contribution.