Quantum-safe digital signatures for long-term document preservation – Complete Phd and Masters Thesis

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Introduction

With the increasing threat of quantum computers to traditional cryptographic systems, there is a growing need for quantum-safe digital signatures for long-term document preservation. Digital signatures play a crucial role in ensuring the authenticity, integrity, and non-repudiation of electronic documents. However, current digital signature algorithms, such as RSA and ECC, are vulnerable to attacks by quantum computers. As such, it is imperative to develop quantum-resistant digital signature schemes that can withstand the power of quantum adversaries.

Background of Study

This chapter will provide an overview of digital signatures, quantum computing, and the potential impact of quantum computers on traditional cryptographic systems. It will also discuss the necessity of quantum-safe digital signatures for long-term document preservation.

Problem Statement

The emergence of quantum computers poses a significant threat to the security of digital signatures. Traditional signature schemes are at risk of being broken by quantum adversaries, leading to the compromise of sensitive information. Therefore, there is a pressing need to develop quantum-resistant digital signature algorithms that can guarantee the security of electronic documents in the long term.

Objective of Study

The primary objective of this study is to investigate and evaluate quantum-safe digital signature schemes for long-term document preservation. The research aims to propose a secure and efficient digital signature scheme that can withstand attacks from quantum computers.

Limitation of Study

This study is limited to the evaluation of quantum-safe digital signature schemes for long-term document preservation. It does not cover other aspects of quantum cryptography or quantum computing.

Scope of Study

The scope of this study includes a comprehensive review of existing quantum-safe digital signature schemes, the design and implementation of a novel digital signature algorithm, and the evaluation of its security and performance.

Significance of Study

This research is significant as it addresses the critical need for quantum-resistant digital signatures in the face of advancing quantum technologies. The findings of this study will contribute to the development of secure and reliable digital signature schemes for long-term document preservation.

Structure of the Thesis

Chapter 1: Introduction
1.1 Introduction
1.2 Background of Study
1.3 Problem Statement
1.4 Objective of Study
1.5 Limitation of Study
1.6 Scope of Study
1.7 Significance of Study
1.8 Structure of the Thesis
1.9 Definition of Terms

Chapter 2: Literature Review
2.1 Introduction to Quantum-safe digital signatures
2.2 Traditional digital signature schemes
2.3 Quantum computing and its implications
2.4 Quantum-resistant cryptographic algorithms
2.5 Existing quantum-safe digital signature schemes
2.6 Evaluation criteria for digital signature schemes
2.7 Security analysis of quantum-safe signatures
2.8 Performance evaluation of quantum-safe signatures
2.9 Comparison of quantum-safe signature schemes
2.10 Challenges and future directions

Chapter 3: System Design and Methodology
3.1 Design objectives and requirements
3.2 Selection of cryptographic primitives
3.3 System architecture
3.4 Key generation and distribution
3.5 Signature generation and verification
3.6 Parameter selection
3.7 Implementation considerations
3.8 Testing and evaluation methodology

Chapter 4: System Implementation
4.1 Implementation overview
4.2 Programming languages and tools
4.3 Algorithm implementation
4.4 Performance optimization
4.5 Testing and validation
4.6 Security analysis
4.7 Comparison with existing schemes
4.8 Scalability and efficiency analysis

Chapter 5: Conclusion and Summary
5.1 Summary of findings
5.2 Contributions of the study
5.3 Limitations and future research directions
5.4 Concluding remarks

Thesis Overview on Quantum-safe Digital Signatures for Long-term Document Preservation

In today’s digital age, the security of electronic documents is of paramount importance. With the rapid advancements in quantum computing, traditional digital signature schemes are at risk of being compromised by quantum adversaries. Quantum-safe digital signatures offer a solution to this pressing security concern by providing cryptographic algorithms that are resistant to quantum attacks.

This thesis aims to investigate and evaluate quantum-safe digital signature schemes for long-term document preservation. The research will involve a comprehensive review of existing quantum-resistant cryptographic algorithms, the design and implementation of a novel digital signature scheme, and the evaluation of its security and performance. The findings of this study will contribute to the development of secure and reliable digital signature schemes that can withstand attacks from quantum computers.

Through a structured approach, this thesis will address the need for quantum-safe digital signatures in ensuring the authenticity, integrity, and non-repudiation of electronic documents. It will provide insights into the challenges and opportunities in the field of quantum-safe cryptography, as well as recommendations for future research directions. By developing a quantum-resistant digital signature scheme, this research will contribute to advancing the field of cryptography and enhancing the security of digital communications in the era of quantum computing.

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