Unlock tomorrow's tech revolution with quantum computing and communication.
Key Features
● Comprehensive coverage of quantum computing from qubits to entanglement.
● Practical insights into real-world applications and emerging trends.
● Visual learning with diagrams and examples to simplify complex concepts.
● Exploration of quantum algorithms, cryptography, and next-gen technologies.
Book Description
As quantum computing continues to reshape industries, learning its nuances is crucial for staying ahead in fields like cryptography, computing, and communication. Kickstart Quantum Computing and Communication Fundamentals is an essential guide for anyone eager to explore quantum technology. Designed for readers at all levels, especially academia, it starts with an accessible introduction to quantum computing and communication, explaining key concepts like superposition, entanglement, and measurement.
The book covers quantum algorithms, including Shor’s and Grover’s algorithms, and dives into quantum circuits, gates, and the technologies behind quantum hardware like superconducting qubits and trapped ions. It also explores secure quantum communication protocols such as quantum key distribution and teleportation, providing hands-on examples with tools like Qiskit.
Beyond the technical aspects, the book examines quantum computing’s impact on cryptography, addressing current vulnerabilities and quantum-secure solutions. Concluding with emerging trends and challenges, this interdisciplinary resource blends physics, computing, and engineering, offering valuable insights for students, educators, and professionals entering the quantum age.
What you will learn
● Learn the fundamentals of quantum computing, including qubits, gates, and quantum states.
● Understand the workings of quantum circuits and key quantum algorithms.
● Gain insights into quantum error detection, correction techniques, and quantum complexity theory.
● Explore quantum communication, including Quantum Key Distribution (QDK) and secure communication protocols.
Table of Contents
1. Introduction to Quantum Computing
2. Quantum Bits, Quantum States, and Quantum Gates
3. Quantum Circuits and Quantum Algorithms
4. Quantum Error Detection and Correction
5. Quantum Hardware and Quantum Complexity Theory
6. Introduction to Quantum Communication
7. Quantum Key Distribution (QKD)
8. Quantum Entanglement and Quantum Teleportation
9. Quantum Cryptography and Secure Communication
10. Quantum Channels, Protocols, and Communication Technologies
11. Quantum Authentication and Quantum Cryptanalysis in Practice
12. Ethical-Legal Considerations and Quantum Communication Challenges
Index