Data security in the post-quantum era
Protect the data that must stay secure for years.
Attackers can capture encrypted data today and decrypt it later. We help organizations assess cryptographic exposure, prioritize risks, and prepare a practical migration plan for post-quantum security.

Why it matters now
Quantum computers don't need to exist yet to threaten your data. Attackers can intercept it today and decrypt it in the future.
Harvest Now, Decrypt Later
Data encrypted with classical algorithms and intercepted today could be decrypted in a few years when a quantum computer capable of breaking encryption becomes available.
Data longevity
If your data needs to remain protected for 5–20 years, classical cryptography will no longer be sufficient. The risk grows every year.
Loss of trust in signatures
Digital signatures based on RSA/ECC may lose credibility. This means a risk of undermining the validity of documents and transactions.
Migration takes years
Large organizations need 3–7 years to transition to post-quantum cryptography. Delaying decisions increases risk and costs.
Who needs to prepare for post-quantum?
Anyone who relies on digital communication: organizations, institutions, and citizens.
Finance and insurance
Transactions, contracts, customer data and operation histories must remain confidential and legally binding for years. Loss of trust in signatures is a real regulatory risk.
Public administration and registries
Registries, e-services and official documents have a time horizon measured in decades. A "harvest now, decrypt later" attack directly undermines the state's credibility.
Healthcare, legal and sensitive data
Medical records, case files, expert opinions and personal data have long-term value and are especially attractive to attackers.
Technology, SaaS and critical infrastructure
Cloud platforms, digital service providers and critical system operators must think about security 5–10 years ahead.
Don't see your industry?
Ask how post-quantum affects your organizationHow does a quantum computer affect digital communication?
Communication confidentiality over time
Encrypted data intercepted today can be decrypted and revealed in the future, increasing the risk of leaks of long-lived information.
Data trust
A quantum computer undermines today's guarantees that information is authentic and untampered, affecting the credibility of digital communication-based processes.
Identity certainty
A quantum computer weakens methods for confirming who is actually participating in communication, increasing the risk of impersonation and bad decisions.
Longevity of digital signatures
Signatures based on classical algorithms are losing resilience, which over time undermines the evidentiary value of documents and transactions.
Strategic predictability
What has simply worked so far, the quantum computer changes and forces a new approach to digital communication security.