The foundation of the Dynamic Security product line
The Epsilon Class Cryptographic System and Method is a keyless, prearranged-channel cryptographic system designed to provide information-theoretic security in the same class as a well-implemented one-time pad, while allowing secure reuse of the effective pad. Each channel is built from a unique dataset that can only decrypt data produced by itself or a matching channel, so there are no keys to transmit, store, steal, or attack.
In the Epsilon Class system, ciphertext is indistinguishable from random data and there is no meaningful keyspace or structural handle for an attacker to search. There is nothing to brute force. Any attempt to break a ciphertext is no better than pulling a candidate plaintext from a random generator and hoping it happens to match. Because the security is information-theoretic rather than computationally hard, this immunity holds even in the presence of arbitrarily large classical or quantum computational power, a property formally proved under an adversary model that assumes the attacker has complete knowledge of the system architecture.
Unlike a one-time pad, the Epsilon Class system does not require the generation, transmission, or stockpiling of pad data, and it does not degrade under heavy or long-term use of a channel. Every channel is built from unique random datasets and parameters, so compromise of one channel has no impact on the security of any other.
The Epsilon Class system is the foundation of the Dynamic Security product line and is suited for applications where long-term, quantum-immune security is critical: secure long-term and short-term data storage, internal communications, high-value databases, strategic telemetry, and critical control systems. Demonstration units and licensing discussions are available upon request.
Morgan Dynamic Research welcomes serious inquiries, whether you are a technical evaluator, a prospective licensee, or a government or private-sector partner considering the Epsilon Class Cryptographic System and Method for licensing, technology partnership, research collaboration, or acquisition. Full technical and security documentation is available to qualified parties on request. Contact us here.
Patent: U.S. 8,458,452 Click Here To View PDF