Unit 1
Introduction: quantum states, density matrix formalism, measurement operators, positive operator valued measures.
Course Name | Quantum Information Theory |
Course Code | 25CSA542 |
Program | 5-Year Integrated MSc/ BSc (Hons) in Mathematics with Minor in Data Science / Quantum Information Science |
Credits | 3 |
Campus | Amritapuri |
Introduction: quantum states, density matrix formalism, measurement operators, positive operator valued measures.
Quantum channels, Examples of Quantum channels, Multipartite quantum systems, Entanglement.
Quantum data compression: Shannon entropy, classical lossless source coding theorem, von Neumann entropy and its properties, Quantum data compression.
Schumacher’s noiseless quantum coding theorem, accessible information and Holevo bound, classical noisy channel coding theorem, quantum mutual information.
Entanglement assisted communication, entanglement assisted capacity theorem, quantum capacity theorem, examples of capacity of quantum channels.
Continuous Evaluation | 20% |
One mid-term examination/ Two periodical examinations | 30% |
End-semester examination | 50% |
Course Description
This course builds on prior quantum computing knowledge, introducing the information-theoretic foundations of quantum systems. Students will study quantum states, channels, entropy, and communication protocols, with a focus on theoretical concepts and essential calculations.
Course Outcomes
On successful completion of the course, students shall be able to
Textbooks
References
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