Temperature dependent transport spin-polarization in the low Curie temperature complex itinerant ferromagnet EuTi1−x Nb x O3
Autor: | Susmita Roy, Prabhat Mandal, Goutam Sheet, Rajeswari Roy Chowdhury, Suman Kamboj, Deepak Kumar Roy, Mukul Kabir |
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Rok vydání: | 2019 |
Předmět: |
Materials science
Condensed matter physics Spin polarization Scattering 02 engineering and technology 021001 nanoscience & nanotechnology Condensed Matter Physics 01 natural sciences Condensed Matter::Materials Science Magnetization Ferromagnetism Electrical resistivity and conductivity 0103 physical sciences Curie Curie temperature Condensed Matter::Strongly Correlated Electrons General Materials Science 010306 general physics 0210 nano-technology Electronic band structure |
Zdroj: | Journal of Physics: Condensed Matter. 31:415601 |
ISSN: | 1361-648X 0953-8984 |
DOI: | 10.1088/1361-648x/ab2cbd |
Popis: | The physical systems with ferromagnetism and 'bad' metallicity hosting unusual transport properties are playgrounds of novel quantum phenomena. Recently EuTi1-x Nb x O3 emerged as a ferromagnetic system where non-trivial temperature dependent transport properties are observed due to coexistence and competition of various magnetic and non-magnetic scattering processes. In the ferromagnetic state, the resistivity shows a T 2 temperature dependence possibly due to electron-magnon scattering and above the Curie temperature [Formula: see text], the dependence changes to T 3/2 behaviour indicating a correlation between transport and magnetic properties. In this paper, we show that the transport spin-polarization ([Formula: see text]) in EuTi1-x Nb x O3, a low Curie temperature ferromagnet, is as high (∼40%) as that in some of the metallic ferromagnets with high Curie temperatures. In addition, owing to the low Curie temperature of EuTi1-x Nb x O3, the temperature (T) dependence of [Formula: see text] could be measured systematically up to [Formula: see text] which revealed a proportionate relationship with magnetization [Formula: see text] versus T. This indicates that such proportionality is far more universally valid than the ferromagnets with ideal parabolic bands. Furthermore, our band structure calculations not only helped to understand the origin of such high spin polarization in EuTi1-x Nb x O3 but also provided a route to estimate the Hubbard U parameter in complex metallic ferromagnets in general using experimental inputs. |
Databáze: | OpenAIRE |
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