U.S. Particle Accelerator School
U.S. Particle Accelerator School
U.S. Particle Accelerator School
Education in Beam Physics and Accelerator Technology
Home
About
About USPAS
FAQs
Recognition and Accolades
USPAS Prize for Achievement in Accelerator Science & Technology
USPAS Teaching Awards
USPAS Directors
USPAS Institutional Board
Director's Advisory Council
Curriculum Sub-Committee
Code of Conduct
Diversity and Inclusion Statement
Sekazi K. Mtingwa Scholarship
Programs
Current Program
Next Program
IU/USPAS Master's Degree
USPAS-Affiliated
University Credits
Joint International
Accelerator School
University-Style Programs
Symposium-Style Programs
Courses, Materials & Instructors
Resources
Tutorials & Online Resources
Accelerator Terms
Code Downloads
Books Linked with USPAS Courses
Joint International Accelerator School Lectures
Proceedings
Opportunities
Internships
Fellowships
Job Openings and Positions
Graduate Educational Opportunities
Other Accelerator Schools
Photos
Contact
Resources
Tutorials & Online Resources
Accelerator Terms
Code Downloads
Books Linked with USPAS Courses
Joint International School Lectures
Proceedings
Home
>
Course Materials
>
by Year
>
10MIT >
Course Materials - MIT - June 2010
RF-Cavity and Component Design for Accelerators
course given by Alireza Nassiri and Geoff Waldschmidt, Argonne National Lab
Particle Emission Sources
FDTD Basics
Lecture 1 - Review
Lecture 2 - Review 2
Lecture 3 - Transmission Line
Lecture 4 - Transmission Line II and Matching
Lecture 5 - Waveguides
Lecture 6 - Wave Guides and Resonators
Lecture 7 - Microwave Network Analysis
Lecture 8 - Power Dividers and Couplers
Lecture 9 - S-Parameters
Lecture 10 - Poynting Vector
Lecture 11 - Impedance Matching
Lecture 12 - Resonators
Lecture 13 - Microwave Measurement Techniques
Lecture 14 - RF Breakdown and Ferrite Materials
Lecture 15 - Power Dividers and Couplers
Lecture 16 - RF Power Sources
Lecture 17 - RF Systems for Accelerators
Lecture 18 - Dielectrics
Lecture 19 - Linac RF System
RF Component Design Issues