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Post-Quantum Side-Channel Attack Resilience

Sector: Education • Location: Luxembourg

Source: EU Funding & Tenders Portal

Project
Ongoing

In the rapidly evolving digital age, the advent of quantum computing poses a significant threat to current cryptographic standards, leaving sensitive information vulnerable to quantum-based attacks. This project addresses the urgent need for resilient cryptographic solutions capable of withstanding quantum threats, focusing on developing and validating post-quantum cryptographic algorithms that ar

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The project “Post-Quantum Side-Channel Attack Resilience” is an infrastructure initiative in the Education sector, located in Luxembourg. Taiyo aggregates data on it from EU Funding & Tenders Portal.

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ongoing

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Description

Description

In the rapidly evolving digital age, the advent of quantum computing poses a significant threat to current cryptographic standards, leaving sensitive information vulnerable to quantum-based attacks. This project addresses the urgent need for resilient cryptographic solutions capable of withstanding quantum threats, focusing on developing and validating post-quantum cryptographic algorithms that are resistant to side-channel attacks. Our solution involves the creation of a robust framework for evaluating the resilience of cryptographic algorithms against quantum and side-channel attacks. By leveraging advanced mathematical models, simulation tools, and hardware implementations, we aim to identify and mitigate vulnerabilities in existing cryptographic systems, ensuring a high level of security in the quantum computing era. Collaboration with industry partners and academic institutions will play a crucial role in validating the effectiveness of our solutions across different platforms and use cases. This project not only aims to advance the field of cryptography in response to quantum computing challenges but also to establish a set of standards and best practices for developing and implementing post-quantum cryptographic solutions, ensuring the long-term security of digital information.

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High

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100%

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