Quantum computers will soon break traditional encryption, exposing your most sensitive data. Adversaries are already harvesting encrypted information today to decrypt when quantum capabilities arrive.
Protecting critical infrastructure and sensitive data against the impending quantum computing threat with NIST-standardized post-quantum cryptography.
Quantum computers will soon break traditional encryption, exposing your most sensitive data. Adversaries are already harvesting encrypted information today to decrypt when quantum capabilities arrive.
Financial transactions vulnerable to quantum attacks, potentially exposing billions in assets and compromising global financial systems.
Medical records and classified information at risk of exposure, with potential decades-long impact on individuals and national security.
Government communications threatened by "harvest now, decrypt later" tactics, creating ongoing vulnerability even for past transmissions.
Critical infrastructure exposed to unprecedented security threats that could affect power grids, water systems, and transportation networks.
Q0 implements NIST-selected post-quantum cryptographic algorithms (MLKEM/MLDSA) in a space-grade, mission-critical security framework designed for government and high-security environments.
Foundational cryptographic primitives implementing NIST-standardized quantum-resistant algorithms with a focus on performance and security. (FIPS 203/204 compliant)
Secure communication channels, including quantum-resistant QR codes and NFC implementations for sensitive data transmission.
Encrypted storage with post-quantum protection, ensuring data remains secure even in the face of future quantum computing capabilities.
Advanced key management for hybrid cryptographic deployments, allowing smooth transition from classical to quantum-resistant security.
Developed with the stringent requirements of government agencies, law enforcement, and critical infrastructure in mind.
Implement quantum-resistant security ahead of OMB M-23-02 requirements with a framework designed for the unique needs of government operations.
Secure sensitive information against quantum threats with multiple layers of cryptographic protection and advanced security controls.
Quantum-safe channels for secure collaboration between departments and agencies with varying security needs and technical capabilities.
Stay ahead of evolving federal security mandates with forward-looking implementations of emerging standards and regulations.
Compatible with existing government infrastructure through carefully designed hybrid approaches and gradual transition paths.
Protect critical communications and evidence chains with quantum-resistant cryptography.
Tamper-proof chain of custody using quantum-resistant signatures and timestamps that will remain valid in future legal proceedings.
Quantum-resistant channels for sensitive operations, ensuring field communications remain confidential against advanced threats.
Non-forgeable identity verification using post-quantum cryptographic primitives to ensure the integrity of law enforcement systems.
Consistent protection across agency boundaries, allowing secure collaboration while maintaining jurisdictional separation.
We welcome collaboration with academic institutions to validate, improve, and extend the Q0 framework.
For qualified security researchers, we provide controlled access to implementation details under appropriate agreements.
Comprehensive technical details to enable independent analysis and validation of security claims and implementation quality.
Collaborative verification opportunities for academic institutions looking to advance quantum-resistant security research.
Incorporate advances in post-quantum cryptography through structured research partnerships and implementation pathways.
The quantum security market represents a massive growth opportunity as organizations prepare for the quantum threat.
Projected global quantum cryptography market size by 2030, with a CAGR of 42.5% from 2023-2030.
Major enterprises projected to adopt post-quantum solutions by 2027 according to industry forecasts.
Estimated cost of cyber attacks globally, with quantum computing threats poised to dramatically increase this figure.
Of CISOs surveyed believe their organization is vulnerable to quantum-based attacks on their cryptographic systems.
Growing regulatory pressures and quantum advances are creating unprecedented market demand for enterprise-ready quantum-resistant solutions.
Year by which NIST and NSA recommend transitioning to post-quantum cryptography to mitigate "harvest now, decrypt later" attacks.
Average cost of a data breach in highly regulated industries, creating urgent demand for quantum-resistant security solutions.
Estimated timeframe before quantum computers can break RSA-2048, according to leading quantum physicists and security researchers.
Government investments in quantum technologies globally from 2019-2023, accelerating the timeline for quantum threat emergence.
Q0 is currently in the audit stage for EAL4+ certification, demonstrating our commitment to the highest security standards.
In final audit phase for Common Criteria EAL4+ certification, the highest assurance level typically achieved for commercial software products.
Undergoing validation for Federal Information Processing Standards compliance, required for use in government systems.
Successfully completed rigorous penetration testing by leading security firms, with no critical vulnerabilities discovered.
Source code and cryptographic implementations have been reviewed by independent security researchers and quantum computing experts.
Ready to secure your organization against quantum threats? Contact our team of security specialists today.
Website:
https://q0day.comSecure Communications:
security@q0day.comGeneral Inquiries:
info@q0day.comTechnical Support:
support@q0day.comTo request access to the Q0 secure portal:
For considering Q0 as your quantum-resistant security partner. We look forward to helping secure your organization against current and future threats.
www.q0day.com
Secure Today. Quantum-Safe Tomorrow.