Courses

For additional course information:

APPPHYS 540: Applied Quantum Mechanics I

Introduction to non-relativistic quantum mechanics. Summary of classical mechanics, postulates of quantum mechanics and operator formalism, stationary state problems (including quantum wells, harmonic oscillator, angular …
Applied Physics Program
Foundational

APPPHYS 541: Applied Quantum Mechanics II

Continuation of non-relativistic quantum mechanics. Advanced angular momentum theory, second quantization, non-relativistic quantum electrodynamic,s advanced scattering theory, density matrix formalism, reservoir theory.
Applied Physics Program
Quantum Science Technology Computing

APPPHYS 611: Nonlinear Optics

Formalism of wave propagation in nonlinear media; susceptibility tensor; second harmonic generation and three-wave mixing; phase matching; third order nonlinearities and four-wave mixing processes; stimulated …
Applied Physics Program
Related

CHEM 261: Introduction to Quantum Chemistry

This course is an introduction to the quantal nature of matter (the Schrodinger equation and the mathematical machinery of quantum mechanics) and the fundamental principles …
Chemistry
Foundational

CHEM 461: Quantum Mechanics

This course provides an introduction to quantum mechanics and its application to chemistry.
Chemistry
Foundational

CSE 598-006: Quantum Computing (Special Topics) – Hybrid Quantum Systems

Graduate-level special topics. Content depends on instructor and subject for that term, often cutting-edge research in EECS/ECE/CSE.
Electrical & Computer Engineering
Quantum Science Technology Computing

ECE 539: Lasers

Complete study of laser operation: the atom-field interaction; homogeneous and inhomogeneous broadening mechanisms; atomic rate equations; gain and saturation; laser oscillation; laser resonators, modes, and …
Electrical & Computer Engineering
Related

ECE 540: Applied Quantum Mechanics I

Introduction to non-relativistic quantum mechanics. Summary of classical mechanics, postulates of quantum mechanics and operator formalism, stationary state problems (including quantum wells, harmonic oscillator, angular …
Electrical & Computer Engineering
Foundational

ECE 541: Applied Quantum Mechanics II

Continuation of non-relativistic quantum mechanics. Advanced angular momentum theory, second quantization, non-relativistic quantum electrodynamic,s advanced scattering theory, density matrix formalism, reservoir theory.
Electrical & Computer Engineering
Quantum Science Technology Computing

ECE 598-005: Quantum Optoelectronics

Quantum Science and Technology innovations are explored and formulated for next-generation quantum photonics and electronics
Electrical & Computer Engineering
Quantum Science Technology Computing