Quantum computing is no longer just a topic for the future: FINMA believes that many financial institutions have some catching up to do in terms of governance and risk management.
Following its analysis of a 2025 survey of 60 Swiss financial institutions, including authorised banks, insurance companies, managers of collective assets and financial market infrastructures, FINMA found that while many supervised institutions recognise the future risks posed by quantum computing, only a limited number have taken concrete steps to address them. However, the risks arising from quantum computing are not merely a theoretical issue for the distant future. According to FINMA Guidance 05/2026, supervised institutions are expected to address these risks in a timely manner and align their governance and risk management frameworks accordingly. The topic is relevant not only for regulated entities but for businesses generally, as organisations across all sectors may be affected by both the opportunities and risks associated with quantum computing
What is Quantum Computing and what opportunities does it offer?
Quantum computing refers to a fundamentally different approach to information processing based on the principles of quantum mechanics. While classical computers operate on a binary system using bits that can take either the value 0 or 1, quantum computers use so-called qubits. These can exist in a superposition of the states 0 and 1 and can also become entangled with one another. As a result, quantum computers can perform certain calculations far more efficiently than classical computers. It is expected that, for certain use cases, quantum computers will eventually be able to solve problems that are practically impossible, or only solvable with enormous effort, using today's classical computers.
What risks does Quantum Computing create?
The most significant risks arising from quantum computing relate to data security, particularly with regard to encryption, digital signature and authentication mechanisms. Additional material risks may result from incomplete migration to quantum-safe encryption, lack of expertise, "harvest now, decrypt later" attacks, and interoperability challenges involving legacy systems. The relevance of the topic, including for non-regulated companies, becomes apparent when considering that many everyday digital services rely on encryption and digital signatures. Examples include secure internet communications, electronic identities and crypto-assets such as Bitcoin. Because powerful quantum computers could eventually compromise many of these technologies, quantum computing is of considerable significance not only from a technological perspective but also from a legal and regulatory standpoint.
What does FINMA recommend?
Conclusion and Outlook
Although the opportunities offered by quantum computing are not yet being widely utilised in practice, organisations should already be addressing the associated risks. FINMA has announced that it will continue to closely monitor developments in the field of quantum computing and will place greater emphasis on this topic as part of its ongoing supervisory activities.