High-pressure resistivity of CeCoIn$_5$ at low temperatures using four-point probe technique and finite element analysis
ORAL
Abstract
We performed high-pressure electronic characterization of the heavy fermion superconductor, CeCoIn$_5$. Using a designer diamond anvil four-point probe system, we measured the temperature-dependent resistivity up to 25 GPa and found evidence for a decrease in the effective mass at high pressures. We determined the resistivity using Van Der Pauws method and a finite element analysis approach. Room temperature resistivity with increasing pressure was also measured and a maximum in resistivity was observed near $\sim$8 GPa. These data suggest the existence of a pressure-dependent modification of the 4$f$ hybridization at the highest pressures
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Authors
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Nathaniel Brady
University of Alabama at Birmingham
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Georgiy Tsoi
University of Alabama at Birmingham (UAB), Birmingham, AL 35294, USA, University of Alabama at Birmingham
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Tesfaye Gebre
National High Magnetic Field Laboratory, Tallahassee, FL 32310, National High Magnetic Field Lab
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Yogesh Vohra
Department of Physics, University of Alabama at Birmingham, University of Alabama at Birmingham (UAB), Birmingham, AL 35294, USA, University of Alabama at Birmingham
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David Hilton
University of Alabama at Birmingham