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Quantum Error Correction Fault Tolerance Quantum Machine Learning

Post-Quantum and Code-Based Cryptography—Some Prospective Research Directions

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Authors: Chithralekha Balamurugan, Kalpana Singh, Ganeshvani Ganesan, Muttukrishnan Rajarajan

Year

2021

Paper ID

13647

Status

Peer-reviewed

Abstract Read

~2 min

Abstract Words

157

Citations

61

Abstract

Cryptography has been used from time immemorial for preserving the confidentiality of data/information in storage or transit. Thus, cryptography research has also been evolving from the classical Caesar cipher to the modern cryptosystems, based on modular arithmetic to the contemporary cryptosystems based on quantum computing. The emergence of quantum computing poses a major threat to the modern cryptosystems based on modular arithmetic, whereby even the computationally hard problems which constitute the strength of the modular arithmetic ciphers could be solved in polynomial time. This threat triggered post-quantum cryptography research to design and develop post-quantum algorithms that can withstand quantum computing attacks. This paper provides an overview of the various research directions that have been explored in post-quantum cryptography and, specifically, the various code-based cryptography research dimensions that have been explored. Some potential research directions that are yet to be explored in code-based cryptography research from the perspective of codes is a key contribution of this paper.

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Current Paper #13647 #25314 A deceptive step towards quantu... #25311 Synthesis of Arbitrary Quantum ... #25276 An efficient quantum algorithm ...

External citation index: OpenAlex citation signal • updated 2026-03-04 11:21:48

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