Cut-and-Choose Bilateral Oblivious Transfer
Chuan Zhao, Han Jiang, Xiaochao Wei, Qiuliang Xu
Abstract
Chuan Zhao, Han Jiang, Xiaochao Wei, Qiuliang Xu
Abstract
Oblivious transfer is a fundamental tool in modern cryptography. It plays an important role in the research of security protocols. In recent years, many oblivious transfer variants with more powerful functionalities are proposed, so as to be fit in different kinds of requirements and scenarios. In this paper, a new oblivious transfer variant, called cut-and-choose bilateral oblivious transfer, is proposed. Based on homomorphic encryption, an efficient one-round protocol of this primitive is constructed, accompanied with rigorous security proof in semi-honest model. When applied in security protocols based on cut-and-choose technique (especially in secure two-party computation), cut-and-choose bilateral oblivious transfer enables a more modular high-level description of the protocol framework, as well as reduces the round complexity of the protocols. Besides, as a basic tool in the information security area, this primitive itself is of independent research interest.
OpenAlex reports 2 citations for this work. Citation counts describe recorded attention and do not establish research quality.
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.
Oblivious transfer is a fundamental tool in modern cryptography. It plays an important role in the research of security protocols. In recent years, many oblivious transfer variants with more powerful functionalities are proposed, so as to be fit in different kinds of requirements and scenarios. In this paper, a new oblivious transfer variant, called cut-and-choose bilateral oblivious transfer, is proposed. Based on homomorphic encryption, an efficient one-round protocol of this primitive is constructed, accompanied with rigorous security proof in semi-honest model. When applied in security protocols based on cut-and-choose technique (especially in secure two-party computation), cut-and-choose bilateral oblivious transfer enables a more modular high-level description of the protocol framework, as well as reduces the round complexity of the protocols. Besides, as a basic tool in the information security area, this primitive itself is of independent research interest.
Key concepts: Oblivious transfer, Homomorphic encryption, Computer science, Protocol (science), Modular design, Cryptography, Secure multi-party computation, Theoretical computer science