activity
20152022
most citedAntiferromagnetic phase of the gapless semiconductor V3Al

37 citations · 84 across the 6 of their papers we have counts for

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6 papers · 1 filter

cond-mat.mtrl-sci20222 cited

The effect of vanadium substitution on the structural and magnetic properties of (FeV)Ga

Brandon Wilfong, Vaibhav Sharma, Omar Bishop +4

FeGa displays a complex magnetic phase diagram that is sensitive and tunable with both electronic and crystallographic structure changes. In order to explore this tunab…

cond-mat.mtrl-sci2021

Altering the magnetic ordering of FeGa via thermal annealing and hydrostatic pressure

Brandon Wilfong, Vaibhav Sharma, Jared Naphy +5

The effects of post-synthesis annealing temperature on arc-melted samples of FeGa has been studied to investigate changes in crystallographic and magnetic properties in…

cond-mat.mtrl-sci20205 cited

Superconducting and Antiferromagnetic Properties of Dual-Phase VGa

Michelle E. Jamer, Brandon Wilfong, Vasiliy D. Buchelnikov +11

The binary compound VGa can exhibit two near-equilibrium phases, consisting of the A15 structure that is superconducting, and the Heusler D0 structure that is semiconductin…

cond-mat.mtrl-sci201916 cited

Structural and electronic properties of the spin-filter material CrVTiAl with disorder

Gregory M. Stephen, Gianina Buda, Michelle E. Jamer +7

The effects of chemical disorder on the transport properties of the spin-filter material CrVTiAl are investigated experimentally and theoretically. Synchrotron X-ray diffraction ex…

cond-mat.mtrl-sci201524 cited

Low-moment ferrimagnetic phase of the Heusler compound Cr2CoAl

Michelle E. Jamer, Luke G. Marshall, George E. Sterbinsky +2

Synthesizing half-metallic fully-compensated ferrimagnets that form in the inverse Heusler phase could lead to superior spintronic devices. These materials would have high spin pol…

cond-mat.mtrl-sci201537 cited

Antiferromagnetic phase of the gapless semiconductor V3Al

M. E. Jamer, B. A. Assaf, G. E. Sterbinsky +5

Discovering new antiferromagnetic compounds is at the forefront of developing future spintronic devices without fringing magnetic fields. The antiferromagnetic gapless semiconducti…