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Quantum Algorithms and their Applications in Cryptology: A Practical Approach

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Cryptography has long been an essential tool in safeguarding digital communication and securing sensitive information. As technology has progressed, so has the complexity of the methods used to protect our data. In the wake of quantum computing's rise, traditional cryptographic systems face serious challenges, demanding a new understanding of how quantum algorithms could both undermine and enhance security.

Chapter 1 deals with the Basics of Cryptography lays the groundwork by introducing classical cryptography, tracing its evolution from ancient ciphers to modern cryptosystems.

In Chapter 2, readers are introduced to Quantum Algorithms, the principles of quantum mechanics relevant to computing, including qubits, superposition, and entanglement.

The Chapter 3 focuses on Shors algorithm, a landmark quantum algorithm that threatens the security of widely used public-key cryptosystems like RSA and ECC.

In Chapter 4 Grovers Algorithm is examined in the context of brute-force attacks on symmetric key cryptography.

Chapter 5 focusing on Simons Algorithm and its role in breaking cryptographic primitives through structure exploitation.

In Chapter 6 a broader discussion about Cryptographic Implications of Quantum Computing is given on how quantum computing affects modern cryptographic systems.

Finally, in Chapter 7, the future of cryptography in the quantum era is discussed.


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Description

Cryptography has long been an essential tool in safeguarding digital communication and securing sensitive information. As technology has progressed, so has the complexity of the methods used to protect our data. In the wake of quantum computing's rise, traditional cryptographic systems face serious challenges, demanding a new understanding of how quantum algorithms could both undermine and enhance security.

Chapter 1 deals with the Basics of Cryptography lays the groundwork by introducing classical cryptography, tracing its evolution from ancient ciphers to modern cryptosystems.

In Chapter 2, readers are introduced to Quantum Algorithms, the principles of quantum mechanics relevant to computing, including qubits, superposition, and entanglement.

The Chapter 3 focuses on Shors algorithm, a landmark quantum algorithm that threatens the security of widely used public-key cryptosystems like RSA and ECC.

In Chapter 4 Grovers Algorithm is examined in the context of brute-force attacks on symmetric key cryptography.

Chapter 5 focusing on Simons Algorithm and its role in breaking cryptographic primitives through structure exploitation.

In Chapter 6 a broader discussion about Cryptographic Implications of Quantum Computing is given on how quantum computing affects modern cryptographic systems.

Finally, in Chapter 7, the future of cryptography in the quantum era is discussed.


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Book details

Note:
The book has been read, but looks new. The book cover has no visible wear, and the dust jacket is included if applicable. No missing or damaged pages, no tears, possible very minimal creasing, no underlining or highlighting of text, and no writing in the margins.

Note

The book has been read, but looks new. The book cover has no visible wear, and the dust jacket is included if applicable. No missing or damaged pages, no tears, possible very minimal creasing, no underlining or highlighting of text, and no writing in the margins.