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研究成果 - 林敏聰 博士

尖端材料與表面科學組
林敏聰 博士
奈米磁學實驗室
主持人:林敏聰 博士
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辦公室:10617台北市羅斯福路四段一號台大物理系 625室
辦公室電話:+886-2-3366-5173
實驗室:台大物理系 619, 620
實驗室電話:+886-2-3366-5168
有機自旋閥元件中非彈性穿隧特性
K. S. Li, Y. M. Chang, S. Agilan, J. Y. Hong, J. C. Tai, W. C. Chiang, K. Fukutani, P. A. Dowben, and Minn-Tsong Lin*
Phys. Rev. B 83, 172404 (2011)
有機自旋閥元件中非彈性穿隧特性
Electrons may experience inelastic coupling with the organic spacer layer during tunneling between two ferromagnetic electrodes.
To probe the transport behavior of spin-polarized electrons in organic materials, organic spin valves were fabricated utilizing
a relatively thin organic barrier of 3,4,9,10-perylene-teracarboxylicdianhydride (PTCDA) dusted with alumina at the organic/ferromagnetic interfaces.
These structures, with an organic barrier layer, exhibited magnetoresistance up to 12% at room temperature.
In studies of the inelastic tunneling spectrum, the observed characteristic peak of the organic layer provides direct evidence of the
interplay between the spin-polarized electrons and the organic molecules.
Combining the inelastic tunneling results with a simple molecular vibration calculation yields further information on the configuration
of the molecular thin film and the possible tunneling states of the spin-polarized electrons.
Such interplay indicates a true transport of spin-polarized electrons through organic material rather than through
defects or interdiffusion compounds formed at the interfaces within the organic spin valve.
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