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1
Introduction
2
Precursors
3
Graphene binding Hamiltonian
4
Topological phase transitions
5
Spinless model
6
Experiments
7
Other examples
8
Mechanisms
9
Spin flip
10
No magnetic disorder
11
Strong disorder
12
Brillion zone
13
bismuthane
14
anneal
15
results
16
haldanes model
17
we disorder model
18
bhz model
19
summary
20
in a nutshell
Description:
Save Big on Coursera Plus. 7,000+ courses at $160 off. Limited Time Only! Grab it Explore topological phase transitions in strongly disordered and amorphous systems through this 44-minute conference talk from the Workshop on Strong Electron Correlations in Quantum Materials. Delve into precursors, graphene binding Hamiltonians, and spinless models while examining experimental evidence and various mechanisms. Investigate spin flip phenomena, magnetic disorder, and the Brillouin zone. Learn about bismuthane, annealing processes, and results from Haldane's model. Analyze the BHZ model and gain a comprehensive understanding of disorder effects in topological systems.

Topological Phase Transitions in Strongly Disordered and Amorphous Systems

ICTP-SAIFR
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