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Flat bands in twisted bilayer transition metal dichalcogenides
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Motivation
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Moire patterns in twisted bilayer MoS2 tBLM
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Computational Details - Multiscale approach
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Stacking in BLM
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3.5 degree twist angle, M3.5
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56.5 degree twist angle, M56.5
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Interlayer spacings ILS in the Moire
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In-plane displacements, M56.5
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Order-parameter
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Order-parameter distribution
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Interlayer spacing and strain distribution
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Shear-strain soliton
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Electronic structure
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Localisation, 2.65 degree MSL
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Electronic structure of individual stacking
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Hybridization between layers
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Confining Potential
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Inhomogeneous hybridization in moire
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Evolution of band structure near 0 degree
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58 degree MSL
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58 degree MSL: origin of localisation
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Effect of strains, 57.35 degree MSL
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Density of states for twisted Moire patterns
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Conclusions
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Acknowledgements
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Q&A
Description:
Explore the fascinating world of flat bands in twisted bilayer transition metal dichalcogenides in this 40-minute conference talk by Manish Jain from the International Centre for Theoretical Sciences. Delve into the motivation behind studying these materials, understand Moiré patterns in twisted bilayer MoS2, and learn about the multiscale computational approach used. Examine various stacking configurations, interlayer spacings, and in-plane displacements in different twist angles. Investigate the order-parameter distribution, strain effects, and electronic structure of these systems. Discover the origins of localization in different Moiré superlattices and how hybridization between layers affects band structure. Gain insights into the density of states for twisted Moiré patterns and their implications. The talk concludes with a summary of findings and a Q&A session, providing a comprehensive overview of this cutting-edge research in quantum matter physics.

Flat Bands in Twisted Bilayer Transition Metal Dichalcogenides by Manish Jain

International Centre for Theoretical Sciences
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