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1
Introduction
2
Superconductivity
3
Linear T resistivity
4
Magnetism
5
Electronic energy gap
6
Magnetic imaging
7
Magnetic moment
8
Orbital magnets
9
Orbital churn insulators
10
Inplane magnetic field
11
Order by disorder
12
What does this mean
13
What does this mean for superconductivity
14
Where does this symmetry breaking happen
15
Hall effect and hull density
16
Nonuniform magnetization
17
Alignment and coupling
18
Local moment variation
19
Raoul Fernandez
Description:
Explore the Pomeranchuk effect and entropy of fluctuating ferromagnets in twisted bilayer graphene in this 41-minute conference talk by Andrea Young from the Kavli Institute for Theoretical Physics. Delve into topics such as superconductivity, linear T resistivity, magnetism, electronic energy gaps, and magnetic imaging. Examine orbital magnets, orbital churn insulators, and the effects of in-plane magnetic fields. Investigate order by disorder, implications for superconductivity, and symmetry breaking. Analyze the Hall effect, hull density, non-uniform magnetization, and local moment variation. Gain insights into the latest developments in Moire materials physics, presented as part of the "Correlated Phases in Moire Materials: One Year Later" online reunion conference.

Pomeranchuk Effect and the Entropy of Fluctuating Ferromagnets in Twisted Bilayer

Kavli Institute for Theoretical Physics
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