PARIS – August 10, 2026 – Pasqal, a global leader in neutral-atom quantum computing, today announced what it, to its knowledge, believes to be a world-first: the trapping of individual atoms using laser light generated by a photonic integrated circuit (PIC). Achieved with Aeponyx, Pasqal believes this milestone demonstrates a new scalable approach to qubit control supporting future large-scale FTQC quantum processors.
Neutral-atom quantum computers rely on highly focused laser beams, known as optical tweezers, to trap and control individual atoms that serve as qubits. As Pasqal pursues machines with more than 10,000 atoms and 100 logical qubits, one of the primary engineering challenges is the growing complexity of optical hardware, which today often requires large free-space optical benches. This advancement addresses this challenge by moving critical optical functions onto a photonic chip.
In the demonstration, Pasqal generated four optical traps through a single photonic chip and used them to hold four individual rubidium atoms inside a quantum processing unit what Pasqal believes is the first time trapping light delivered from a photonic chip has held atoms on a neutral-atom quantum computer. The work is part of a broader development program to generate, route and control laser light directly on-chip.
In testing, the photonic-chip architecture reproduced atom trapping with performance in line with Pasqal’s existing bulk-optics systems, including atom lifetimes of approximately 27.5 seconds. Pasqal believes the result validates integrated photonics as a viable building block for future neutral-atom processors, without sacrificing the quality of qubit control.
Co-developed with Aeponyx’s silicon-nitride photonics expertise, the platform is designed to shrink the optical footprint of future processors by as much as 50 times and to open a practical route to large-scale manufacturing, an expected advantage as the industry moves from prototypes to production.
Pasqal will work to scale the photonic architecture toward the compact systems required for fault-tolerant, industrial-scale quantum computing, with a long-term target of more than 10,000 atoms and 100 logical qubits.
The milestone illustrates Pasqal’s efforts to beat the forefront of the race to fault-tolerant quantum computing and its strategy of owning the critical hardware layers of its stack, turning targeted moves like the Aeponyx acquisition into measurable technical and commercial advances.
About Pasqal
Pasqal is a global leader in delivering practical quantum computing at scale utilizing neutral atom technology and dedicated software for industry, science, and governments. Since its founding in 2019, Pasqal has leveraged Nobel Prize winning research to build high-performance quantum systems and cloud-ready software designed to address complex challenges in optimization, simulation, and artificial intelligence.
Headquartered in France, Pasqal employs approximately 300 people and serves over 25 clients and partners, including Saudi Aramco, LG Electronics, Crédit Agricole CIB, CMA CGM, OVHcloud, Thales, IBM (Pasqal is part of the IBM Quantum Network), and Sumitomo.
Backed by more than USD 300 million in total private funding from leading international investors, Pasqal is pursuing a listing on Nasdaq in partnership with Bleichroeder Acquisition Corp. II (Nasdaq: BBCQ) and is accelerating the adoption of scalable, high-performance quantum computing worldwide.
