Cornell physicists have discovered that minimizing disorder, not varying electron count, is the key factor for controlling superconductivity in the unique material iron selenide (FeSe), a new insight for understanding high-temperature superconductors.
Minimizing Disorder Key to Controlling Superconductivity in Iron Selenide
Cornell physicists have found that minimizing disorder is crucial for controlling superconductivity in iron selenide (FeSe), which enhances understanding of high-temperature superconductors. This discovery could have implications for advanced materials research in various fields. While not directly related to Iran, advancements in superconductors may influence technology sectors that Iran is interested in.
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