YoVDO

Frustrated Heisenberg Models, Possibly Treated With Neural-Network Wave Functions - Federico Becca

Offered By: Kavli Institute for Theoretical Physics via YouTube

Tags

Quantum Magnetism Courses Magnetic Materials Courses Emergent Electrodynamics Courses Quantum Gauge Theories Courses

Course Description

Overview

Save Big on Coursera Plus. 7,000+ courses at $160 off. Limited Time Only!
Explore a 44-minute conference talk on frustrated Heisenberg models and their potential treatment with neural-network wave functions. Delivered by Federico Becca from the University of Trieste, this presentation was part of the Dynamical Response and Transport in Quantum Magnets conference held at the Kavli Institute for Theoretical Physics in August 2023. Delve into recent advancements in quantum magnetism, including the emergence of low-energy quantum gauge theories and their impact on collective phenomena in quantum magnets. Gain insights into the search for novel topologically-ordered states of matter, computational and measurement techniques for dynamical and transport properties, and the roles of disorder and spin-phonon interactions. Discover the implications of emergent-electrodynamics in topological spin textures, unusual dynamics in integrable systems, and the revolutionary impact of Moiré systems on 2D quantum magnetism.

Syllabus

Frustrated heisenberg models, possibly treated with neural-network... ▸ Federico Becca (U Trieste)


Taught by

Kavli Institute for Theoretical Physics

Related Courses

Overview Lecture on Basics of Frustrated Magnets - ABC of Neutron Scattering by Jason Gardner
International Centre for Theoretical Sciences via YouTube
Kardar Parisi Zhang Dynamics in the Heisenberg Chain - Alan Tennant
Kavli Institute for Theoretical Physics via YouTube
Large Magnetic Heat Transport and Plateaux Phases in Spin-Chain Compound YbAlO3
Kavli Institute for Theoretical Physics via YouTube
Bound State Formation in the Excitation Spectrum of Quantum Ising Chain CoNb2O6 in Low Transverse Field
Kavli Institute for Theoretical Physics via YouTube
Spin Dynamics Near the Field-Induced Gap-Closing Transition in 1D Magnets - Masaki Oshikawa
Kavli Institute for Theoretical Physics via YouTube