DOE OSTI · 2481034
Theory of Novel Superconductors (Final Technical Report)
Abstract
This Final Technical Report gives the results of a series of problems related to the origin of superconductivity, the quantum mechanical state of matter where electrical resistance vanishes, in several classes of new materials where the conventional mechanism that binds electrons into pairs based on the electron-phonon interaction apparently fails. In several families of quantum materials including cuprates, iron-based superconductors, and heavy fermion materials, it is believed that the repulsive Coulomb interaction between electrons can create effective attractive interactions, generally in higher pair momentum channels. These "unconventional" superconductors include materials with the highest critical temperatures at ambient pressure known, so it is imperative to understand how superconductivity arises to guide the search for materials that superconduct at or near room temperature, which would have enormous technological impact. A second objective has been to construct a theory that can quantitatively explain the properties of existing materials, based on information from first-principles electronic structure calculations.
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Hirschfeld, Peter [Univ. of Florida, Gainesville, FL (United States)] (ORCID:0000000303757386). 2024-12-12. Theory of Novel Superconductors (Final Technical Report). https://doi.org/10.2172/2481034
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