dc.citation.conferencePlace |
KO |
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dc.citation.title |
한국물리학회 2018 가을학술회 |
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dc.contributor.author |
유정우 |
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dc.contributor.author |
오인선 |
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dc.contributor.author |
박정민 |
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dc.contributor.author |
조준현 |
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dc.date.accessioned |
2024-02-01T01:08:34Z |
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dc.date.available |
2024-02-01T01:08:34Z |
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dc.date.created |
2018-12-21 |
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dc.date.issued |
2018-10-26 |
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dc.description.abstract |
The longitudinal spin Seebeck effects with a ferro- or ferrimagnetic insulator provides a new architecture of a thermoelectric device that could significantly improve the energy conversion efficiency. Until now, epitaxial yttrium iron garnet (YIG) films grown on gadolinium gallium garnet (GGG) substrates by a pulsed laser deposition have been most widely used for spin thermoelectric energy conversion studies. In this work, we developed a simple route to obtain a highly uniform solution-processed YIG film and used it for the on-chip microelectronic spin Seebeck characterization. We improved the film roughness down to ~ 0.2 nm because the extraction of thermally induced spin voltage relies on the interfacial quality. The on-chip microelectronic device has a dimension of 200 um long and 20 um wide. The solution-processed 20 nm thick YIG film with a 10 nm Pt film was used for the spin Seebeck energy converter. For a temperature difference of △T ~ 0.036 K applied on the thin YIG film, the obtained △V ~ 28 uV, which is equivalent to SLSSE ~ 80.4 nV/K, close to the typical reported values for thick epitaxial YIG films. The temperature and magnetic field dependent behaviors of spin Seebeck effects in our YIG films suggest active magnon excitations through the noncoherent precession channel. The effective SSE generation with the solution-processed thin YIG film provides versatile applications of the spin thermoelectric energy conversion. |
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dc.identifier.bibliographicCitation |
한국물리학회 2018 가을학술회 |
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dc.identifier.uri |
https://scholarworks.unist.ac.kr/handle/201301/80651 |
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dc.language |
영어 |
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dc.publisher |
한국물리학회 |
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dc.title |
Spin Seebeck effect of solution processed ferrimagnetic insulator thin film, Yttrium Iron Garnet |
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dc.type |
Conference Paper |
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dc.date.conferenceDate |
2018-10-24 |
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