Stack of 2D materials creates 'spherical cow'
By stacking two semiconducting 2D materials, researchers have, for the first time, managed to create a 'spherical cow’ Kondo lattice.
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By stacking two semiconducting 2D materials, researchers have, for the first time, managed to create a 'spherical cow’ Kondo lattice.
Atomic scale 2D defect in transition metal dichalcogenide. Credit: Edoardo Martino. Atomic structure model rendered using VESTA
Tokyo, Japan – A scientist from Tokyo Metropolitan University has applied numerical methods to capture the hallmarks of a quantum phenomenon known as
She overcame bias against women in science and personal tragedy to perform groundbreaking work. She earned recognition for her achievements last year.
Mathematical Formulas Describe Physical Phenomenon in Quantum Dots, Other Nanomaterials Written by AZoNanoDec 24 2020 Theoretical physicists Yoshimichi Teratani and Akira Oguri of Osaka City University, and Rui Sakano of the University of Tokyo have developed mathematical formulas that describe a physical phenomenon happening within quantum dots and other nanosized materials. The formulas, published in the journal Physical Review Letters, could be applied to further theoretical research about the physics of quantum dots, ultra-cold atomic gasses, and quarks. At issue is 'the Kondo effect'. ...