Literature DB >> 31139805

Phonon confinement and spin-phonon coupling in tensile-strained ultrathin EuO films.

Ramu Pradip1, Przemysław Piekarz, Dániel G Merkel, Jochen Kalt, Olga Waller, Aleksandr I Chumakov, Rudolf Rüffer, Andrzej M Oleś, Krzysztof Parlinski, Tilo Baumbach, Svetoslav Stankov.   

Abstract

Reducing the material sizes to the nanometer length scale leads to drastic modifications of the propagating lattice excitations (phonons) and their interactions with electrons and magnons. In EuO, a promising material for spintronic applications in which a giant spin-phonon interaction is present, this might imply a reduction of the degree of spin polarization in thin films. Therefore, a comprehensive investigation of the lattice dynamics and spin-phonon interaction in EuO films is necessary for practical applications. We report a systematic lattice dynamics study of ultrathin EuO(001) films using nuclear inelastic scattering on the Mössbauer-active isotope 151Eu and first-principles theory. The films were epitaxially grown on YAlO3(110), which induces a tensile strain of ca. 2%. By reducing the EuO layer thickness from 8 nm to a sub-monolayer coverage, the Eu-partial phonon density of states (PDOS) reveals a gradual enhancement of the number of low-energy phonon states and simultaneous broadening and suppression of the peaks. These deviations from bulk features lead to significant anomalies in the vibrational thermodynamic and elastic properties calculated from the PDOS. The experimental results, supported by first-principles theory, unveil a reduction of the strength of the spin-phonon interaction in the tensile-strained EuO by a factor of four compared to a strain-free lattice.

Entities:  

Year:  2019        PMID: 31139805     DOI: 10.1039/c9nr01931f

Source DB:  PubMed          Journal:  Nanoscale        ISSN: 2040-3364            Impact factor:   7.790


  2 in total

1.  Phonon confinement and interface lattice dynamics of ultrathin high-k rare earth sesquioxide films: the case of Eu2O3 on YSZ(001).

Authors:  Svetoslav Stankov; Dániel G Merkel; Jochen Kalt; Jörg Göttlicher; Jan Łażewski; Małgorzata Sternik; Paweł T Jochym; Przemysław Piekarz; Tilo Baumbach; Aleksandr I Chumakov; Rudolf Rüffer
Journal:  Nanoscale Adv       Date:  2021-12-07

2.  Lattice Dynamics and Structural Phase Transitions in Eu2O3.

Authors:  Jan Łażewski; Małgorzata Sternik; Paweł T Jochym; Jochen Kalt; Svetoslav Stankov; Aleksandr I Chumakov; Jorg Göttlicher; Rudolf Rüffer; Tilo Baumbach; Przemysław Piekarz
Journal:  Inorg Chem       Date:  2021-06-18       Impact factor: 5.165

  2 in total

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