Palo Alto Networks Advances in Quantum Security with the Launch of the QRNG Open API

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Palo Alto Networks, a global leader in cybersecurity, has taken a significant step toward a secure future against quantum threats with the launch of its Quantum Random Number Generator (QRNG) Open API. Designed in collaboration with six leaders in the field of quantum random number generation, the QRNG Open API serves as a key solution for preparing organizations against the challenges of the quantum era.


A Proactive Defense Against Quantum Threats

Quantum computing is revolutionizing multiple technological fields, but it also poses significant security risks. The combination of quantum computing, artificial intelligence (AI), and deep learning heightens the need for more secure systems. In this context, quantum-generated random numbers are essential for creating robust cryptographic keys and protecting data against future quantum attacks.

The QRNG Open API, now available through Palo Alto Networks’ GitHub portal, eliminates adoption barriers and fosters interoperability among multiple vendors. According to Rich Campagna, Senior Vice President of Product Management at Palo Alto Networks:

“Collaborating in the QRNG space is vital to ensuring a secure future against quantum threats. The launch of the QRNG Open API is an effort to benefit as many organizations as possible by promoting open and accessible standards.”


Collaboration and Standardization: Keys to QRNG Adoption

The QRNG Open API was developed alongside technological innovators such as Anametric, ID Quantique, Qrypt, Quantinuum, Quantropi, and Quside. This framework offers multiple benefits for organizations:

  1. Enhanced Interoperability: Facilitates the integration of QRNG into multi-vendor networks, promoting freedom of choice and maximizing flexibility.
  2. Simplified Access: Provides a common mechanism to obtain high-quality entropy through external QRNG platforms.
  3. Acceleration of Adoption: By removing technical barriers, it drives the implementation of QRNG-based technologies.

Collaborators of the QRNG Open API Project

Fernando de la Iglesia, VP of Product, Quside: “Our mission is to reduce the barriers to adopting quantum randomness. This project establishes clear and accessible guidelines for more organizations to leverage these technologies.”

Wil Oxford, CEO, Anametric: “The QRNG Open API is crucial for facilitating the transition to post-quantum cryptography. It is an essential step to ensure our digital infrastructure is ready for a quantum future.”

Duncan Jones, Head of Cybersecurity, Quantinuum: “The quality of random numbers in cryptographic operations is a critical aspect that is often overlooked. This common standard strengthens current security and ensures flexibility for the future.”


The Importance of QRNG in Cryptographic Infrastructure

Recent security recommendations from the National Institute of Standards and Technology (NIST) include implementing post-quantum cryptography combined with QRNG to mitigate future threats. Integrating QRNG into current applications not only enhances the quality of cryptographic operations but also prepares organizations to face the challenges of quantum computing.

With this framework, Palo Alto Networks plans to incorporate QRNG into its Next Generation Firewalls (NGFW) this year, enabling these devices to use quantum entropy for advanced cryptographic functions.


A Secure and Accessible Future

Palo Alto Networks has led global initiatives to standardize and democratize advanced security technologies. Its commitment to quantum cybersecurity reinforces its position as a key partner in protecting data and systems against emerging threats.

As emphasized by Rich Campagna: “Quantum security is a challenge that no organization can face alone. This project reflects our commitment to working with governments, technology partners, and global standards to ensure a secure future for all.”

With the QRNG Open API, Palo Alto Networks sets a precedent for cross-sector collaboration, paving the way for an era of accessible and effective quantum security.

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