ENEE489B

Topics in Electrophysics; Introduction to Quantum Technology

Prerequisite: MATH141 and MATH240 or equivalent. Recommended: Students need not have taken a course on quantum mechanics; however, students should be comfortable with: probability theory, Markov chains, complex numbers, quantum states, measurements, unitary operations, matrix algebra, Pauli matrices, the tensor product, waves, the harmonic oscillator, the quantum harmonic oscillator, and the Schrodinger equation. Cross-listed with ENEE489B Credit granted for PHYS467 or ENEE489B. Investigates the physical systems used to implement quantum computers. Covers basics of atomic clocks, laser interferometers, quantum key distribution, quantum networks, and three types of qubits (ion-based, superconductor-based, and semiconductor-based).

Sister Courses: ENEE489A, ENEE489E, ENEE489F, ENEE489I, ENEE489J, ENEE489L, ENEE489M, ENEE489N, ENEE489Q, ENEE489R, ENEE489W, ENEE489Y, ENEE489Z

Past Semesters

0 reviews
Average rating: N/A

During the Spring 2020 and Spring 2021 semesters, students could choose to take some of their courses pass-fail mid-semester which skews grade data aggregated across multiple semesters.

No grade data available.