Abstract:
:A detailed experimental investigation of Fe1+y Te (y = 0.11, 0.12) using pulsed magnetic fields up to 60 T confirms remarkable magnetic shape-memory (MSM) effects. These effects result from magnetoelastic transformation processes in the low-temperature antiferromagnetic state of these materials. The observation of modulated and finely twinned microstructure at the nanoscale through scanning tunneling microscopy establishes a behavior similar to that of thermoelastic martensite. We identified the observed, elegant hierarchical twinning pattern of monoclinic crystallographic domains as an ideal realization of crossing twin bands. The antiferromagnetism of the monoclinic ground state allows for a magnetic-field-induced reorientation of these twin variants by the motion of one type of twin boundaries. At sufficiently high magnetic fields, we observed a second isothermal transformation process with large hysteresis for different directions of applied field. This gives rise to a second MSM effect caused by a phase transition back to the field-polarized tetragonal lattice state.
journal_name
Proc Natl Acad Sci U S Aauthors
Rößler S,Koz C,Wang Z,Skourski Y,Doerr M,Kasinathan D,Rosner H,Schmidt M,Schwarz U,Rößler UK,Wirth Sdoi
10.1073/pnas.1905271116subject
Has Abstractpub_date
2019-08-20 00:00:00pages
16697-16702issue
34eissn
0027-8424issn
1091-6490pii
1905271116journal_volume
116pub_type
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