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August 10, 2023
Skepticism among scientists has been deepening in the past few days over a Korean research team’s discovery of the room-temperature superconductor known as LK-99, after a slew of replication efforts have fallen short. The University of Maryland’s Condensed Matter Theory Center on Tuesday said on the social media platform X, formerly Twitter, “With a great deal of sadness, we now believe that the gam...
August 1, 2023
Lawrence Berkeley National Lab simulated this using heavy-duty compute power from the Department of Energy, and looked to see what would happen to the
April 17, 2023
In this episode of Brains, Black Holes, and Beyond, Senna Aldoubosh and Noelle Kim sit down with Josh Leeman, a graduate student in the Electrical and Computer Engineering department.
December 21, 2020
Researchers Identify Novel Topological Properties in Cobalt Disulfide Written by AZoMDec 21 2020 The Schoop Lab, which is heading an association of institutions both in the United States and overseas, has reported unexpected new topological characteristics of cobalt disulfide (CoS 2)—a magnetic pyrite—expanding one’s interpretation of electrical channels in this extensively 2, in comparison to the theoretical prediction. Image Credit: Figure courtesy of the Schoop Lab. The researchers us...
December 19, 2020
Our NanoNews Digest Sponsors Home > Press > New topological properties found in "old" material of Cobalt disulfide: For one thing, its not a true half-metal Experimental verification of Weyl nodes in Cobalt disulfide, in comparison to the theoretical prediction. CREDIT Princeton Department of Chemistry, Schoop Lab Abstract: Leading a collaboration of institutions in the U.S. and abroad, the Princeton University Department of Chemistry is reporting new topological properties of the magnetic pyri...
December 18, 2020
E-Mail IMAGE: Experimental verification of Weyl nodes in Cobalt disulfide, in comparison to the theoretical prediction. view more Credit: Princeton Department of Chemistry, Schoop Lab Leading a collaboration of institutions in the U.S. and abroad, the Princeton University Department of Chemistry is reporting new topological properties of the magnetic pyrite Cobalt disulfide (CoS2) that expand our understanding of electrical channels in this long-investigated material. Using angle-r...