A Capacity-achieving One-message Key Agreement With Finite Blocklength\n Analysis
Setareh Sharifian, Alireza Poostindouz, Reihaneh Safavi–Naini
Abstract
Open-access reader
Setareh Sharifian, Alireza Poostindouz, Reihaneh Safavi–Naini
Abstract
Open-access reader
Information-theoretic secret key agreement (SKA) protocols are a fundamental\ncryptographic primitive that are used to establish a shared secret key between\ntwo or more parties. In a two-party SKA in source model, Alice and Bob have\nsamples of two correlated variables, that are partially leaked to Eve, and\ntheir goal is to establish a shared secret key by communicating over a reliable\npublic channel. Eve must have no information about the established key. In this\npaper, we study the problem of one-message secret key agreement where the key\nis established by Alice sending a single message to Bob. We propose a\none-message SKA (OM-SKA) protocol, prove that it achieves the one-way secret\nkey capacity, and derive finite blocklength approximations of the achievable\nsecret key length. We compare our results with existing OM-SKAs and show the\nprotocol has a unique combination of desirable properties.\n
A significance statement is not available in the OpenAlex record.
A contribution statement is not available in the OpenAlex record.
Method details are not available in the OpenAlex metadata.
Findings are not separately available in the OpenAlex metadata.
Limitations are not available in the OpenAlex metadata.
Application details are not available in the OpenAlex metadata.
Information-theoretic secret key agreement (SKA) protocols are a fundamental\ncryptographic primitive that are used to establish a shared secret key between\ntwo or more parties. In a two-party SKA in source model, Alice and Bob have\nsamples of two correlated variables, that are partially leaked to Eve, and\ntheir goal is to establish a shared secret key by communicating over a reliable\npublic channel. Eve must have no information about the established key. In this\npaper, we study the problem of one-message secret key agreement where the key\nis established by Alice sending a single message to Bob. We propose a\none-message SKA (OM-SKA) protocol, prove that it achieves the one-way secret\nkey capacity, and derive finite blocklength approximations of the achievable\nsecret key length. We compare our results with existing OM-SKAs and show the\nprotocol has a unique combination of desirable properties.\n
Key concepts: Key (lock), Alice and Bob, Computer science, Alice (programming language), Key-agreement protocol, Pre-shared key, Shared secret, Public-key cryptography