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The [course_title] course is the second part of the theoretical sequence course about physics of solids. The second part is devoted to Fluctuation-dissipation theorem, Scattering, F-sum rule,
Sensitivity to boundary conditions, linear response theory, and the physics of disorder. You will learn about Superconductivity, the local moment and itinerant magnetism, Landau parameters,
the Kondo problem and Fermi liquid theory.
The purpose of the course is to familiarise you with the essential theories of solid-state- physics.


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

Course Curriculum

lec01 Fluctuation dissipation theorem 00:40:00
lec02 Scattering 00:50:00
lec03 General properties of response function 00:20:00
lec04 f-sum rule 00:15:00
lec05 Kubo formula 00:25:00
lec06 Sensitivity to boundary conditions 00:30:00
lec07 Scaling theory of localization 00:50:00
lec08 Mott variable range hopping 00:20:00
lec09 Transverse response of superconductor 00:50:00
lec10 Microscopic derivation of London equation 01:00:00
lec11_12 Effect of disorder 00:20:00
lec13 Tunnelling and Josephson effect 00:20:00
lec14_15 Local moment magnetism 00:20:00
lec16_17 Ferromagnetic and anti-ferromagnetic spin waves 00:20:00
lec18_19 Band magnetism and stoner theory 00:15:00
lec20_21 Local moment in metals and Friedel sum rule 00:25:00
lec22 Singlet ground state and Kondo resonance 01:00:00
lec23_24 Fermi liquid theory and electron spectral function 00:20:00
lec25 Fermi liquid interpretation of Kondo ground state 00:20:00
Submit Your Assignment 00:00:00
Certification 00:00:00

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