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BTQ Technologies (Nasdaq: BTQ) powers digital twin for France's aQCess quantum platform

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Rhea-AI Filing Summary

BTQ Technologies Corp., through its wholly owned subsidiary QPerfect, announced a research collaboration with the University of Strasbourg in support of aQCess, described as France's first publicly accessible neutral atom quantum computing platform targeting more than 400 qubits.

Under the partnership, QPerfect is using its MIMIQ™ simulation platform to build a hardware-accurate digital twin of the aQCess processor, mirroring its native gate set, instruction set architecture, atom transport operations and experimentally characterized noise. Deployed both on premises at CESQ and via the cloud, this virtual backend is intended to let researchers and industry users design, test and validate quantum workloads alongside the physical system, aligning with BTQ’s full-stack quantum hardware, software and secure network strategy.

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aQCess target capacity more than 400 qubits Targeted size of the neutral atom quantum processor for the aQCess platform
aQCess partners 18 partners Total number of organizations participating in the aQCess initiative
Multidisciplinary research institutes in aQCess 7 institutes Number of multidisciplinary research institutes involved in aQCess
Graduate schools in aQCess 3 graduate schools Number of graduate schools participating in the aQCess consortium
International partners in aQCess 4 partners Number of international partners contributing to aQCess
Quantum hubs in aQCess 2 quantum hubs Number of quantum hubs included among aQCess partners
QPerfect founding year 2023 Year QPerfect was founded as a French quantum computing company
neutral atom quantum computing technical
"France's first publicly accessible neutral atom quantum computing platform"
A method of building quantum computers that uses individual neutral atoms held in place by laser light and manipulated with electromagnetic fields to represent quantum bits (qubits). Think of the atoms as tiny, well-organized chess pieces whose positions and internal states are used to perform very complex calculations much faster than ordinary computers for certain problems. It matters to investors because the approach offers a pathway to scalable, potentially more stable quantum processors, which can affect the future value of companies developing quantum hardware, software, and related services.
digital twin technical
"building a hardware-accurate digital twin of the aQCess quantum processor"
A digital twin is a live virtual replica of a physical asset, process, or system that mirrors real-world behavior using data and models so users can test changes, predict problems, and measure performance without touching the real thing. For investors, digital twins matter because they can lower maintenance costs, speed product development, improve uptime and reliability, and make future cash flows and risks easier to forecast — like using a flight simulator to safely train and tune a real airplane.
Rydberg-mediated interactions technical
"powered by ultracold ytterbium atoms with Rydberg-mediated interactions"
Interactions between atoms or particles that are excited into very high-energy “Rydberg” states, where their outer electrons are far from the nucleus and create unusually large electrical dipoles. These long-range, tunable forces let nearby atoms strongly influence each other over distances much larger than normal, like distant people communicating through a megaphone instead of shouting. Investors watch the concept because it underpins experimental approaches to quantum computing, secure communications, and precision sensors, which can affect hardware development and future technology markets.
post-quantum security solutions technical
"full-stack, neutral-atom quantum computing platform spanning hardware, middleware, and post-quantum security solutions"
Security tools and protocols redesigned to protect digital information against the capabilities of future quantum computers. Think of them as stronger locks and new keys being installed now so that encrypted data, communications and software remain safe when vastly more powerful computers arrive; for investors, they matter because companies that fail to adapt risk data breaches, regulatory penalties and lost business while vendors of these solutions may capture a growing, high-value market.
Equipex+ grant financial
"supported via the National Research Agency Equipex+ grant ANR-21-ESRE-0032"
Quantum Logic Unit (QLU) technical
"Quantum Logic Unit, QLU, a multi-layered framework designed to accelerate quantum development"

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FAQ

What collaboration did BTQ (BTQ) announce in this Form 6-K?

BTQ Technologies announced that its subsidiary QPerfect entered a research collaboration with the University of Strasbourg to support aQCess, described as France’s first public neutral atom quantum computing platform, by providing a hardware-accurate digital twin using its MIMIQ™ simulation technology.

What is the aQCess platform mentioned by BTQ (BTQ)?

aQCess is a public neutral atom quantum computing platform led by the University of Strasbourg, targeting more than 400 high-quality, individually controllable atomic qubits, and bringing together 18 partners across research institutes, graduate schools, international partners and quantum hubs for multidisciplinary quantum research and training.

What role will QPerfect, BTQ’s (BTQ) subsidiary, play in the aQCess project?

QPerfect is building a cloud-enabled, hardware-accurate digital twin of the aQCess quantum processor with its MIMIQ™ platform, replicating the native gate set, instruction set, atom transport operations and experimentally characterized noise to let users design, test and validate quantum workloads against a realistic model of the machine.

How does the aQCess partnership support BTQ (BTQ) Technologies’ strategy?

The partnership connects BTQ’s QPerfect software stack directly with a sovereign European quantum initiative, supporting BTQ’s strategy to build full-stack neutral atom quantum technologies spanning hardware, middleware and post-quantum security, and to move quantum systems from theory toward deployment in real network and computing infrastructure.

What technologies from BTQ (BTQ) and QPerfect are highlighted in this collaboration?

The collaboration highlights QPerfect’s MIMIQ™ simulation platform and its Quantum Logic Unit, QLU™, a multi-layered framework designed for quantum development and error correction on neutral atom systems, which QPerfect is sharpening by working closely with the scaling aQCess hardware at the University of Strasbourg.

Who are the key scientific leaders named in BTQ’s (BTQ) aQCess collaboration?

The scientific effort is led by Guido Masella for QPerfect and Stanimir Kondov for CESQ, with aQCess co-coordinated by Shannon Whitlock and Guido Pupillo, reflecting a close connection between the simulation, compilation and error-correction software teams and the neutral atom hardware teams in Strasbourg.

 

 

 UNITED STATES
SECURITIES AND EXCHANGE COMMISSION

Washington, D.C. 20549

FORM 6-K

REPORT OF FOREIGN PRIVATE ISSUER PURSUANT TO RULE 13a-16 OR 15d-16
UNDER THE SECURITIES EXCHANGE ACT OF 1934
 

For the month of July 2026
Commission File Number:  001-42794 

BTQ Technologies Corp.
(Exact Name of Registrant as Specified in Charter)

700 West Georgia Street, Suite 2500

Vancouver, British Columbia, V7Y 1B3

(Address of principal executive office)

Indicate by check mark whether the registrant files or will file annual reports under cover of Form 20-F or Form 40-F.

Form 20-F Form 40-F

 

 

 

EXHIBIT INDEX
 

EXHIBIT DESCRIPTION
   
99.1 News Release dated July 22, 2026

 

SIGNATURE

Pursuant to the requirements of the Securities Exchange Act of 1934, the registrant has duly caused this report to be signed on its behalf by the undersigned, there unto duly authorized.

    BTQ Technologies Corp.
    (Registrant)
       
Date: July 22, 2026 By:  Lonny Wong
    Name: Lonny Wong
    Title:

Chief Financial Officer

 

Exhibit 99.1 

 

BTQ Technologies' QPerfect Subsidiary and the University of Strasbourg Partner to Support France's First Public Neutral-Atom Quantum Computing Platform

QPerfect joins the aQCess team to build a hardware-accurate digital twin of the processor with MIMIQ™ as a tool to accelerate quantum software R&D

VANCOUVER, BC, July 22, 2026 /CNW/ -- BTQ Technologies Corp. ("BTQ" or the "Company") (Nasdaq: BTQ) (CBOE CA: BTQ), a global quantum technology company focused on securing mission-critical networks, today announced that its wholly owned subsidiary, QPerfect, has entered into a research collaboration with the University of Strasbourg in support of aQCess, France's first publicly accessible neutral atom quantum computing platform.

Led by co-coordinators Shannon Whitlock and Guido Pupillo at the Centre Européen de Sciences Quantiques ("CESQ"), part of the Institut de Science et d'Ingénierie Supramoléculaires ("ISIS"), a joint laboratory of the University of Strasbourg and the CNRS, the aQCess platform is targeting more than 400 qubits and is designed to give researchers and industry open access to state-of-the-art neutral atom hardware.

Under the partnership, QPerfect is building a hardware-accurate digital twin of the aQCess quantum processor using its MIMIQ™ simulation platform. The collaboration brings QPerfect's software stack into direct contact with a sovereign European quantum computing initiative supported by the French National Strategy for Quantum Technologies, reinforcing BTQ's broader strategy of developing technologies across quantum software, hardware and secure network infrastructure.

The first joint project delivers a cloud-based, hardware-accurate quantum digital twin of the aQCess processor. The digital twin replicates the machine at the circuit level, including its native gate set, instruction set architecture, atom transport operations and experimentally characterized noise, acting as a virtual backend that mirrors the real hardware. Built on MIMIQ™ and deployed both on premises at CESQ and as a cloud accessible service, it lets research teams and end users design, test and validate quantum workloads against an accurate model of the machine before and alongside running on the physical system.

Co-located in the same building and sharing a scientific heritage and research agenda, QPerfect and the aQCess team bring the simulation, compilation and error correction software stack into direct contact with neutral atom hardware as it comes online. This proximity gives QPerfect a hardware-accurate view of a real, scaling quantum system and supports BTQ's objective of building trusted quantum technologies that can move beyond theory and into real infrastructure. The scientific effort is led by Guido Masella for QPerfect and Stanimir Kondov for CESQ.

"QPerfect's collaboration with the University of Strasbourg reflects exactly why BTQ moved to bring this team and technology into our platform," said Olivier Roussy Newton, Chief Executive Officer of BTQ Technologies. "BTQ builds trusted quantum technologies across silicon, blockchain and quantum networks. MIMIQ™ sits directly within that deployment layer, helping users run, validate and control quantum systems before and alongside real hardware. By placing QPerfect's software stack alongside one of Europe's leading neutral atom quantum computing initiatives, we are strengthening the tools needed to make quantum systems more usable, more reliable and more accessible as they scale."

"Every major shift in computing is won or lost at the interface between hardware and the software that makes it usable. I lived that with the transition to public key cryptography, and we are at exactly that point in quantum computing today," said Philippe Blot, Chief Executive Officer of QPerfect. "Working shoulder to shoulder with the aQCess team gives us something rare: a hardware accurate view of a real, scaling neutral atom machine. That is how we make MIMIQ™ a faithful digital twin, and how we sharpen the compilation and error correction software, including our Quantum Logic Unit, QLU™, that we are building for neutral atom systems as they scale toward 400 qubits and beyond."

"aQCess is built to give France and Europe open access to leading neutral atom quantum hardware. A trustworthy digital twin is essential to that mission. It lets users get productive on day one and lets us validate the machine as it scales," said Guido Pupillo, Co-Coordinator of aQCess. "QPerfect's simulation and compilation expertise, right here on campus, is a natural fit for this work."

About aQCess
aQCess – "Atomic Quantum Computing as a Service" – is a full-stack public quantum computing platform led by the University of Strasbourg and supported by the French National Strategy for Quantum Technologies via the National Research Agency Equipex+ grant ANR-21-ESRE-0032, as part of the Quantum Sciences and Technologies priority programme for research (PEPR-Quantique: pepr-quantique.fr/projet/aqcess). It brings together 18 partners, including 7 multidisciplinary research institutes, 3 graduate schools, 4 international partners, and 2 quantum hubs. aQCess is based on a first-of-its-kind digital quantum processor with more than 400 high-quality, individually controllable atomic qubits. It is powered by ultracold ytterbium atoms with Rydberg-mediated interactions, which have emerged as one of the most scalable physical systems for quantum computing. It leverages the most recent scientific and technological advances and makes quantum computing more accessible to academia and industry on national and international levels. The platform is open for multidisciplinary research and teaching spanning chemistry, materials science, physics, mathematics, and computer science, and serves as a training, testing, and development platform for the growing number of start-ups and established companies investing in quantum technologies. More information: aqcess.cesq.fr 

About BTQ
BTQ Technologies Corp. (Nasdaq: BTQ | Cboe CA: BTQ) is a quantum technology company focused on accelerating the transition from classical networks to the quantum internet. Backed by a broad patent portfolio and deep technical expertise, BTQ is developing a full-stack, neutral-atom quantum computing platform spanning hardware, middleware, and post-quantum security solutions for finance, telecommunications, logistics, life sciences, and defense.

Connect with BTQ: Website | LinkedIn | X/Twitter

About QPerfect 
QPerfect, a wholly owned subsidiary of BTQ Technologies, is a French quantum computing company based in Strasbourg, led by a team of scientists and engineers recognized for their pioneering work in neutral atom physics, quantum optics, and quantum software engineering, and specializing in quantum computing and quantum design automation. Founded in 2023, the deeptech company has received the i-Lab Grand Prix and provides powerful technology to enable researchers, developers, and manufacturers to realize the full potential of quantum computers. 

At the core of QPerfect's innovation is the Quantum Logic Unit (QLU), a multi-layered framework designed to accelerate quantum development. Its flagship product, MIMIQ™, forms the first layer of the QLU™ and offers a cutting-edge platform that executes quantum algorithms with unmatched speed, accuracy, and flexibility -- surpassing existing simulators and current quantum computers. For more information, please visit https://qperfect.io

ON BEHALF OF THE BOARD OF DIRECTORS
Olivier Roussy Newton
CEO, Chairman

Neither Cboe Canada nor its Regulation Services Provider accepts responsibility for the adequacy or accuracy of this news release. No stock exchange, securities commission or other regulatory authority has approved or disapproved the information contained herein. This news release does not constitute an offer to sell or the solicitation of an offer to buy securities.

Forward Looking Information 

Certain statements herein contain forward-looking statements and forward-looking information within the meaning of applicable securities laws. Such forward-looking statements or information include but are not limited to statements or information with respect to: aQCess; QPerfect's partnership with aQCess and the benefits thereof to the Company and QPerfect; the joint projects with aQCess, including the uses and benefits of such projects; the business plans of the Company; the Company's research partnerships; and anticipated markets in which the Company may be listing its common shares. Forward-looking statements or information often can be identified by the use of words such as "anticipate", "intend", "expect", "plan" or "may" and the variations of these words are intended to identify forward-looking statements and information.

The Company has made numerous assumptions including among other things, assumptions about general business and economic conditions, the development of post-quantum algorithms and quantum vulnerabilities, and the quantum computing industry generally. The foregoing list of assumptions is not exhaustive.

Although management of the Company believes that the assumptions made and the expectations represented by such statements or information are reasonable, there can be no assurance that forward-looking statements or information herein will prove to be accurate. Forward-looking statements and information are based on assumptions and involve known and unknown risks which may cause actual results to be materially different from any future results, expressed or implied, by such forward-looking statements or information. These factors include risks relating to: the availability of financing for the Company; business and economic conditions in the post-quantum and encryption computing industries generally; the speculative nature of the Company's research and development programs; the supply and demand for labour and technological post-quantum and encryption technology; unanticipated events related to regulatory and licensing matters and environmental matters; changes in general economic conditions or conditions in the financial markets; changes in laws (including regulations respecting blockchains); risks relating to the integration of QPerfect; risks that QCIM, QSSN, Bitcoin Quantum, or other products may not achieve commercialization on the timelines anticipated or at all; risks that pilot programs and early-stage commercial deployments may not convert to revenue-generating contracts; risks relating to competition in the post-quantum cryptography and quantum computing industries; risks relating to the Company's dependence on key partnerships in South Korea and other jurisdictions; risks relating to changes in regulatory frameworks for digital assets, stablecoins, and post-quantum cryptographic standards; risks that the Bitcoin Quantum mainnet launch may not occur on the anticipated timeline or achieve the expected network adoption; and other risk factors as detailed from time to time in the Company's public disclosure documents filed on SEDAR+ and EDGAR. The Company does not undertake to update any forward-looking information, except in accordance with applicable securities laws.

 

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SOURCE BTQ Technologies Corp.

View original content to download multimedia: http://www.newswire.ca/en/releases/archive/July2026/22/c6668.html

%SEDAR: 00008174E

For further information: For further information: E: desk@btq.com; Bill Mitoulas, Investor Relations, T: +1.416.479.9547, E: bill@btq.com; Media Contact: BTQ@kcsa.com

CO: BTQ Technologies Corp.

CNW 07:30e 22-JUL-26

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