Published May 16, 2023 | Version 1

Generalised Kerr Microcomb Physics in Synchronously Driven Systems: Thesis Simulation Programs

Authors/Creators

  • 1. Institute of Physics, Swiss Federal Institute of Technology (EPFL), Lausanne, Switzerland

Contributors

  • 1. Institute of Physics, Swiss Federal Institute of Technology (EPFL), Lausanne, Switzerland

Description

This depot inludes Matlab programs and functions for many of the figures and examples presented in the 2023 thesis of Miles H. Anderson from EPFL. Every script file is intended to be runable as is. The programs are tested with Matlab 2020b, and some of them make use of the Signal Processing package.

A guide on the program structure is given in the Appendix chapter of the thesis, which accompanies the example programs found in the Appendix Demos folder.

Each main folder corresponds to a chapter in the thesis.

Some of the programs might contain errors and unexplained sections. Earnest inquiries about the programs might be answered by Miles at his email: miles.anderson@epfl.ch.

Supervisor: Prof. Tobias J. Kippenberg, Laboratory of Photonic and Quantum Measurements (LPQM) at EPFL.

Files

MAndersonThesis2023_Generalised_Microcomb_Physics_Simulation_Programs.zip

Additional details

Funding

Swiss National Science Foundation
Soliton Microcombs: Exploring driven dissipative Kerr cavities 200020_192293
European Commission
MICROCOMB - Applications and Fundamentals of Microresonator Frequency Combs 812818