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Spin stress contribution to the lattice dynamics of FePt.


ABSTRACT: Invar-behavior occurring in many magnetic materials has long been of interest to materials science. Here, we show not only invar behavior of a continuous film of FePt but also even negative thermal expansion of FePt nanograins upon equilibrium heating. Yet, both samples exhibit pronounced transient expansion upon laser heating in femtosecond x-ray diffraction experiments. We show that the granular microstructure is essential to support the contractive out-of-plane stresses originating from in-plane expansion via the Poisson effect that add to the uniaxial contractive stress driven by spin disorder. We prove the spin contribution by saturating the magnetic excitations with a first laser pulse and then detecting the purely expansive response to a second pulse. The contractive spin stress is reestablished on the same 100-ps time scale that we observe for the recovery of the ferromagnetic order. Finite-element modeling of the mechanical response of FePt nanosystems confirms the morphology dependence of the dynamics.

SUBMITTER: von Reppert A 

PROVIDER: S-EPMC7343378 | biostudies-literature | 2020 Jul

REPOSITORIES: biostudies-literature

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Spin stress contribution to the lattice dynamics of FePt.

von Reppert A A   Willig L L   Pudell J-E JE   Zeuschner S P SP   Sellge G G   Ganss F F   Hellwig O O   Arregi J A JA   Uhlíř V V   Crut A A   Bargheer M M  

Science advances 20200708 28


Invar-behavior occurring in many magnetic materials has long been of interest to materials science. Here, we show not only invar behavior of a continuous film of FePt but also even negative thermal expansion of FePt nanograins upon equilibrium heating. Yet, both samples exhibit pronounced transient expansion upon laser heating in femtosecond x-ray diffraction experiments. We show that the granular microstructure is essential to support the contractive out-of-plane stresses originating from in-pl  ...[more]

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