Quantum Theory, also referred as quantum physics and quantum mechanics is a fundamental theory of modern physics that explains the nature and behaviour of matter and energy on the atomic and subatomic level. The [course_title] course teaches Classical field theory, symmetries, and Noether's theorem. You will be introduced to the concepts of Quantization of scalar fields, spin ½ fields, and Gauge bosons. Finally, the course focuses on the Feynman graphs, analytic properties of amplitudes and unitarity of the S-matrix., Calculations in quantum electrodynamics (QED) and renormalisation basics.
This course does not involve any written exams. Students need to answer 5 assignment questions to complete the course, the answers will be in the form of written work in pdf or word. Students can write the answers in their own time. Each answer need to be 200 words (1 Page). Once the answers are submitted, the tutor will check and assess the work.
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Course Credit: MIT
|L1 Quantization of the Free Scalar Field||00:30:00|
|L2 Notes on the Euler-Maclaurin Summation Formula||00:30:00|
|L3 Informal Notes on Distributions and the Fourier Transform||00:20:00|
|L4 Informal Notes Dirac Delta Function as a Distribution||00:20:00|
|L5 Quantum Mechanics and Path Integrals||00:25:00|
|L6 Path Integrals, Green’s Functions, and Generating Functions||00:30:00|
|L7 Quantization of the Free Scalar Field||00:35:00|
|L8 Particle Production by a Classical Source||00:35:00|
|L9 The Dirac Field, Part I||00:40:00|
|L10 The Dirac Field, Part II||00:40:00|
|L11 The Dirac Field, Part III||00:50:00|
|L12 Discrete Symmetries of the Dirac Field Part 1||00:30:00|
|L13 Discrete Symmetries of the Dirac Field Part 2||00:40:00|
|L14 Interacting Field Theories||00:50:00|
|L15 Interacting Field Theories (Executive Summary Version)||00:55:00|
|Submit Your Assignment||00:00:00|
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