The antiferromagnetic transition of UPd2Al3break junctions: a new realization of N-shaped current–voltage characteristics
Author:
Publisher
IOP Publishing
Subject
Condensed Matter Physics,General Materials Science
Link
http://stacks.iop.org/0953-8984/16/i=20/a=014/pdf
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1. Hybridization gap in the heavy-fermion compound UPd2Al3 via quasiparticle scattering spectroscopy;Physical Review B;2017-04-17
2. Exploring point-contact spectra of Ba1−xNaxFe2As2in the normal and superconducting states;Physical Review B;2014-03-14
3. Joule heating and current-induced instabilities in magnetic nanocontacts;Physical Review B;2006-11-07
4. Point-contact investigations of challenging superconductors: two-band MgB2, antiferromagnetic HoNi2B2C, heavy-fermion UPd2Al3, paramagnetic MgCNi3;Physica B: Condensed Matter;2005-04
5. Realization of an N-Shaped IVC of Nanoscale Metallic Junctions Using the Antiferromagnetic Transition;NATO Science Series
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