
Norman Mannella
Articles
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Jan 25, 2024 |
nature.com | Norman Mannella
Experiments with unprecedented energy and momentum resolution reveal the nature of the pairing symmetry in KFe2As2 and pave the way for a unified theoretical description of unconventional superconductivity in iron-based materials. Any description of the microscopic mechanisms responsible for superconductivity requires knowledge of the pairing symmetry, which describes how electrons at the Fermi surface couple to one another in momentum space.
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Jan 5, 2024 |
nature.com | Yinong Zhou |Matthew Delmont |Triet Ho |Nicholas S. Sirica |Paolo Vilmercati |Norman Mannella | +3 more
AbstractThe fine-tuning of topologically protected states in quantum materials holds great promise for novel electronic devices. However, there are limited methods that allow for the controlled and efficient modulation of the crystal lattice while simultaneously monitoring the changes in the electronic structure within a single sample.
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Jan 5, 2024 |
nature.com | Yinong Zhou |Matthew Delmont |Triet Ho |Nicholas S. Sirica |Paolo Vilmercati |Norman Mannella | +3 more
AbstractThe fine-tuning of topologically protected states in quantum materials holds great promise for novel electronic devices. However, there are limited methods that allow for the controlled and efficient modulation of the crystal lattice while simultaneously monitoring the changes in the electronic structure within a single sample.
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