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1
Introduction
2
Collaborators
3
Summary
4
Conclusions
5
Correlated materials
6
Optimum doping
7
Hover model
8
dispersion relations
9
correlations
10
mod insulator
11
conductivity
12
results
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spin correlations
14
zback coefficient
15
correlation
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Triangular lattice
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Honeycomb lattice
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Square lattice
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Ziba coefficient
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Power factor
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Conclusion
22
My impression
23
Magnetic relations
24
Why such a big effect
25
The power factor
26
Thermal conductivity
Description:
Save Big on Coursera Plus. 7,000+ courses at $160 off. Limited Time Only! Grab it Explore a conference talk on the effects of lattice geometry on thermopower properties in the repulsive Hubbard model. Delve into correlated materials, optimum doping, and the Hover model as presented by Thereza Paiva from UFRJ, Brazil. Examine dispersion relations, correlations, and mod insulators while investigating conductivity results and spin correlations. Compare triangular, honeycomb, and square lattices, analyzing their impact on Ziba coefficients and power factors. Gain insights into magnetic relations and the significant effects observed in thermopower properties. Conclude with an exploration of thermal conductivity and the speaker's impressions on this complex topic in quantum materials.

Effects of Lattice Geometry on Thermopower Properties of the Repulsive Hubbard Model

ICTP-SAIFR
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