Author:
Chen Jing-Han,Poudel Chhetri Tej,Grant Anthony T,Bai Xiaojian,Zhang Qiang,Chang Chung-Kai,Young David P,Dubenko Igor,Talapatra Saikat,Ali Naushad,Stadler Shane
Abstract
Abstract
The phase transitions in MnNiGe compounds were explored by manipulating the heat treatment conditions and through hydrostatic pressure application. As the quenching temperature increased, both the first-order martensitic structural transition temperatures and magnetic transition temperatures decreased relative to those in the slowly-cooled samples. When the samples were quenched from 1200 ∘C, the first-order martensitic structural transition temperature lowered by more than 200 K. The structural transitions also shifted to lower temperature with the application of hydrostatic pressure during measurement. Temperature-dependent x-ray diffraction results reveal that the changes of the cell parameters resulting from the structural transitions are nearly identical for all samples regardless of the extensive variation in their structural transition temperatures. In addition, neutron scattering measurements confirm the magnetic structure transition between simple and cycloidal spiral magnetic structures.
Funder
Louisiana Board of Regents
the U.S. National Science Foundation, Division of Materials Research
Basic Energy Sciences
Cited by
2 articles.
订阅此论文施引文献
订阅此论文施引文献,注册后可以免费订阅5篇论文的施引文献,订阅后可以查看论文全部施引文献