YoVDO

Quantum Phases of Matter - Non-perturbative Luttinger Relations

Offered By: International Centre for Theoretical Sciences via YouTube

Tags

Quantum Physics Courses Condensed Matter Physics Courses Many-body Physics Courses Gauge Theory Courses Strongly Correlated Systems Courses

Course Description

Overview

Explore the intricacies of quantum phases of matter in this comprehensive lecture focusing on non-perturbative Luttinger relations. Delve into the Anderson Lattice Model and Kondo Lattice model, examining their key concepts and applications. Gain insights through practical examples and a detailed conclusion on the Kondo lattice model. Analyze Oshikavan's non-perturbative argument, including its assumptions and implications. Investigate the coupling of spin gauge fields and engage with the speaker's arguments and conclusions. Participate in a thought-provoking Q&A session to further enhance understanding of these complex quantum phenomena.

Syllabus

Quantum Phases of Matter XXI - Non-perturbative Luttinger relations
Anderson Lattice Model
Kondo Lattice model
Example
Conclusion - Kondo lattice model
Oshikavan's non-perturbative argument
Assumption
Why the spin gauge field couples with 2?
Argument
Conclusion
Q&A


Taught by

International Centre for Theoretical Sciences

Related Courses

Foundations of Classical Electrodynamics
Indian Institute of Technology, Kharagpur via Swayam
Superstring Theory: The DNA of Reality
The Great Courses Plus
A Graded Geometric Perspective on Tensor Hierarchies
Prague Mathematical Physics Seminar via YouTube
Prethermal States in Non-Equilibrium Dynamics of Scalar Fields by Rajdeep Sensarma
International Centre for Theoretical Sciences via YouTube
A Topologically Massive Double Copy in 3D Gravity and Gauge Theories
Dublin Institute for Advanced Studies DIAS via YouTube