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Introduction
In recent years, the development of quantum computing has raised concerns about the security of traditional encryption methods. Quantum computers have the potential to break current encryption protocols, putting sensitive data at risk. As a result, there is a growing need for quantum-resistant encryption methods that can withstand the power of quantum computers. This thesis focuses on exploring quantum-resistant encryption for long-term data storage, aiming to provide a secure solution for protecting data in the future quantum computing era.
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 Two: Literature Review
2.1 Evolution of Quantum Computing
2.2 Current Encryption Methods
2.3 Quantum Computing Threats to Encryption
2.4 Quantum-resistant Encryption Algorithms
2.5 Long-term Data Storage Challenges
2.6 Quantum-resistant Encryption for Data Storage
2.7 Case Studies on Quantum-resistant Encryption
2.8 Comparison of Encryption Methods
2.9 Future Trends in Quantum-resistant Encryption
2.10 Summary of Literature Review
Chapter Three: Research Methodology
3.1 Research Design
3.2 Data Collection Methods
3.3 Data Analysis Techniques
3.4 Sample Selection
3.5 Variables and Measures
3.6 Ethical Considerations
3.7 Data Validity and Reliability
3.8 Research Limitations
3.9 Research Framework
3.10 Timeline for Research Activities
Chapter Four: Discussion of Findings
4.1 Analysis of Data
4.2 Comparison of Encryption Algorithms
4.3 Implementation Challenges
4.4 Security Considerations
4.5 Recommendations for Future Research
4.6 Practical Implications
4.7 Policy Recommendations
4.8 Future Directions
4.9 Summary of Findings and Contributions
Chapter Five: Conclusion and Summary
5.1 Summary of Findings
5.2 Contribution to Knowledge
5.3 Implications for Practice
5.4 Limitations of the Study
5.5 Recommendations for Future Research
5.6 Conclusion
Thesis Overview on Quantum-resistant Encryption for Long-term Data Storage:
The rapid advancement of quantum computing has raised concerns about the security of traditional encryption methods. Quantum computers have the potential to break current encryption protocols, which poses a significant threat to the confidentiality and integrity of sensitive data. In response to this challenge, researchers have been exploring quantum-resistant encryption algorithms that can withstand the power of quantum computers. This thesis focuses on investigating quantum-resistant encryption for long-term data storage, with the aim of providing a secure solution to protect data in the future quantum computing era.
The thesis begins with an introduction that provides a background of the study, discusses the problem statement, objectives, limitations, scope, significance, structure of the thesis, and defines key terms related to quantum-resistant encryption. The literature review in Chapter Two explores the evolution of quantum computing, current encryption methods, quantum computing threats to encryption, quantum-resistant encryption algorithms, long-term data storage challenges, and case studies on quantum-resistant encryption. The research methodology in Chapter Three outlines the research design, data collection methods, analysis techniques, sample selection, variables and measures, ethical considerations, and research framework.
Chapter Four presents a detailed discussion of the findings, including the analysis of data, comparison of encryption algorithms, implementation challenges, security considerations, recommendations for future research, and practical implications. Finally, Chapter Five provides a conclusion and summary of the thesis, highlighting the key findings, contributions to knowledge, implications for practice, limitations of the study, recommendations for future research, and a final conclusion.
This thesis aims to contribute to the growing body of knowledge on quantum-resistant encryption for long-term data storage and provide valuable insights for researchers, practitioners, and policymakers in the field of cybersecurity. By exploring the potential threats of quantum computing to encryption and proposing secure solutions for data protection, this thesis addresses an important gap in current research and offers practical recommendations for mitigating risks in the era of quantum computing.
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