Bulletin of the American Physical Society
APS March Meeting 2018
Volume 63, Number 1
Monday–Friday, March 5–9, 2018; Los Angeles, California
Session A31: Superconductivity: Vortex Phases and Dynamics
8:00 AM–10:48 AM,
Monday, March 5, 2018
LACC
Room: 407
Sponsoring
Units:
DCMP DMP
Chair: Steven Anlage, University of Maryland
Abstract ID: BAPS.2018.MAR.A31.12
Abstract: A31.00012 : Tuning the Vortex Lattice Phase Diagram of MgB2 through Doping*
10:12 AM–10:24 AM
Presenter:
Allan Leishman
(Univ of Notre Dame)
Authors:
Allan Leishman
(Univ of Notre Dame)
Elizabeth De Waard
(Univ of Notre Dame)
Soham Manni
(Ames Laboratory)
P.C. Canfield
(Ames Laboratory)
John Barker
(National Institute of Standards and Technology)
Lisa DeBeer-Schmitt
(Oak Ridge National Laboratory)
Charles Dewhurst
(Institut Laue-Langevin)
Morten Eskildsen
(Univ of Notre Dame)
Small angle neutron scattering (SANS) on superconducting MgB2 has revealed a complex vortex lattice (VL) phase diagram with three hexagonal phases: F, L, and I. A large degree of metastability has been observed in conjunction with supercooling or superheating across these phase boundaries. Remarkably, this metastability is neither a result of vortex pinning nor single domain free energy [C. Rastovski et al., Phys. Rev. Lett. 111, 107002 (2013)]. To better understand this behavior, we have modified the underlying vortex-vortex interaction by doping the crystal with either magnetic (Mn) or non-magnetic (C) atoms on the Mg and B sites, respectively. SANS on the Mn doped crystal revealed a phase diagram that remains largely the same as that for the pure crystal, but a decrease in the longitudinal VL correlation length was observed. Conversely, the C doped sample demonstrated a significant suppression of the L phase, while the correlation length remained comparable.
*This work is supported by the U.S. Department of Energy, Office of Basic Energy Sciences under Awards DE-FG02-10ER46783 and DE-AC02- 07CH11358. This research is funded in part by the Gordon and Betty Moore Foundation’s EPiQS Initiative through Grant GBMF4411.
To cite this abstract, use the following reference: http://meetings.aps.org/link/BAPS.2018.MAR.A31.12
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