Ironwood meta key agreement and authentication protocol
Author(s) -
Iris Anshel,
Derek Atkins,
Dorian Goldfeld,
Paul E. Gunnells
Publication year - 2020
Publication title -
advances in mathematics of communications
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 0.601
H-Index - 26
eISSN - 1930-5346
pISSN - 1930-5338
DOI - 10.3934/amc.2020073
Subject(s) - key (lock) , software deployment , computer security , public key cryptography , protocol (science) , authentication (law) , computer science , cryptographic protocol , provisioning , cryptography , quantum key distribution , key distribution , quantum , computer network , encryption , operating system , medicine , physics , alternative medicine , pathology , quantum mechanics
Number theoretic public-key solutions, currently used in many applications worldwide, will be subject to various quantum attacks, making them less attractive for longer-term use. Certain group theoretic constructs are now showing promise in providing quantum-resistant cryptographic primitives, and may provide suitable alternatives for those looking to address known quantum attacks. In this paper, we introduce a new protocol called a Meta Key Agreement and Authentication Protocol (MKAAP) that has some characteristics of a public-key solution and some of a shared-key solution. Specifically, it has the deployment benefits of a public-key system, allowing two entities that have never met before to authenticate without requiring real-time access to a third-party, but does require secure provisioning of key material from a trusted key distribution system (similar to a symmetric system) prior to deployment. We then describe a specific MKAAP instance, the Ironwood MKAAP, discuss its security, and show how it resists certain quantum attacks such as Shoru0027s algorithm or Groveru0027s quantum search algorithm. We also show Ironwood implemented on several "internet of things" (IoT devices), measure its performance, and show how it performs significantly better than ECC using fewer device resources.
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