W1
Quantum Theory of Radiation and Coherent States
Analyze photon statistics and manipulate coherent states using quantum optical formalism.
5 videos•226m
3 readings
5 topics
1 homework
W2
Quantum Theory of Light‑Matter Interaction
Model atom‑field coupling and compute transition amplitudes using both semiclassical and full quantum approaches.
4 videos•163m
3 readings
5 topics
1 homework
W3
Damping and Open Quantum Systems
Apply the Lindblad master equation to model dissipation and noise in quantum optical systems.
4 videos•188m
3 readings
5 topics
1 homework
W4
Quantum Information Applications
Design and simulate quantum information protocols using entangled squeezed states and Bell inequality tests.
5 videos•251m
3 readings
5 topics
1 homework
References
Week 1: Quantum Theory of Radiation and Coherent States
Week 2: Quantum Theory of Light‑Matter Interaction
Week 3: Damping and Open Quantum Systems
Week 4: Quantum Information Applications
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