Module Convenor
|
Subject Area
|
Scheduled Date
|
|
ASTRO
|
| |
Term1 |
|
| (Leicester) |
Formation of Planetary Systems |
TBC |
| Tom Wilson (果冻传媒) |
Astrophysical Techniques
|
TBC |
|
, (Nottingham)
Pier-Emmanuel Tremblay (果冻传媒)
|
Astronomy Background Reading |
TBC |
|
Christopher Moore and
(Birmingham
|
Black Hole and Gravitational Waves |
TBC |
|
|
| |
Term 1 |
|
| (Nottingham) |
An Introduction to Scientific Computing with Python |
Start date: 28/09/2026 |
|
Mark Slater (Birmingham), Thomas Latham (果冻传媒)
(Bristol), Ben Morgan (果冻传媒)
|
Software Development with C++ |
TBC |
| |
Term 2 |
|
|
High performance computing with Julia |
TBC |
CONDENSED MATTER and THEORY
|
| |
Term 1 |
|
| Gavin Bell (果冻传媒) |
Nano / Surface Physics |
TBC |
| Dr Maksym Myronov (果冻传媒) |
Epitaxy Fundamentals |
TBC |
| Gavin Bell (果冻传媒) |
Vacuum Science (hands-on content + Moodle) |
TBC |
| and (Birmingham) |
Optics Lab (hands-on content) |
TBC |
| Maksym Myronov (果冻传媒) |
Introduction to Microfabrication |
TBC |
| Richard Beanland (果冻传媒) |
Introduction to Microscopy |
TBC |
| (Birmingham) |
Probes of Condensed Matter:Mossbauer and Mu-SR
|
TBC |
| (Birmingham) |
Exact Diagonalization |
TBC |
| (Birmingham) |
Introduction to Continuous Groups |
TBC |
| (Birmingham) |
Bosonic Physics |
TBC |
| (Birmingham) |
Bose-Einstein Condensation in Ultra Cold Gases |
TBC |
|
Animesh Datta (果冻传媒)
|
Quantum Computation |
Self study |
|
Maksym Myronov (果冻传媒)
|
Physics of semiconductor materials and devices |
TBC |
| |
Advanced Experimental Techniques in Condensed Matter Physics (果冻传媒 students only)
|
TBC |
| |
Term 2 |
|
| (Nottingham) and |
Introduction to topological phases of matter
|
TBC |
| (Birmingham) |
Introduction to Quantum Field Theory for Condensed Matter
|
TBC |
| Nottingham) |
Open Quantum Systems and Quantum Thermodynamics
|
TBC |
| (Nottingham) |
Classical and Quantum Phase Transitions |
TBC |
|
|
| |
Term 1 |
|
| Karolos Potamianos (果冻传媒) |
Relativistic Quantum Mechanics |
TBC |
| (Sheffield) |
Introduction to Particle Physics |
TBC |
| (Birmingham) |
Digital Electronics |
TBC |
| (Birmingham) |
Group Theory for Particle Physics |
TBC |
| (Nottingham) |
Quantum Field Theory |
TBC
|
| (Bristol) |
QED and the Standard Model |
TBC |
| |
Term 2 |
|
| (Bristol) TBA |
Statistics for Particle Physics |
TBC |
| (Birmingham) |
Particle Techniques |
TBC |
| (Birmingham) |
Higgs Boson Physics |
TBC |
| (Birmingham) and Karim Massri (CERN) |
Trigger for Particle Physics |
TBC |
| (Sheffield) |
Astroparticle |
TBC |
| (Birmingham) |
Spin-charge separation and infinite particle transformations |
TBC |
| (Sheffield) |
Massive Neutrinos |
TBC |
| (Sheffield) |
Particle Dark Matter |
TBC |
| (Sheffield) |
Background radiations in underground laboratories |
TBC |
| and Adam Softley-Brown(Sheffield) |
Dark Matter: evidence and axions |
TBC
|