Course Description
Introduction to quantum photonics - generation and manipulation of quantum light on a chip. Classical (coherent) and quantum (Fock, squeezed, entangled, cluster) states of light. Cavity quantum electrodynamics: strong and weak-coupling regime (Purcell factor, spontaneous emission control). Light-matter entanglement in solid state. Measurements of photon statistics and photon indistinguishability; quantum state tomography. Platforms for quantum photonics. Quantum networks; photonics in quantum simulation and computing.
Grading Basis
ROP - Letter or Credit/No Credit
Min
3
Max
3
Course Repeatable for Degree Credit?
No
Course Component
Lecture
Enrollment Optional?
No
Enforced Requisites
Prerequisite
Complete undergraduate/introductory graduate electromagnetics and quantum mechanics course.
Does this course satisfy the University Language Requirement?
No
Schedule
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Programs
EE340 is a completion requirement for:
- (from the following course set: )
- (from the following course set: )