Spin-dependent resonant quantum tunneling between magnetic nanoparticles on a macroscopic length scale
J. Varalda, C. A. Dartora, A. J. A. de Oliveira, W. A. Ortiz, B. Vodungbo, M. Marangolo, F. Vidal, Y. Zheng, G. G. Cabrera and D. H. Mosca
ARTIGO
Inglês
Agradecimentos: The Brazilian authors would like to thank CAPES-COFECUB, CNPq (Conselho Nacional de Desenvolvimento Científico e Tecnológico), and FAPESP (Fundação de Amparo a Pesquisa do Estado de São Paulo) for partial financial support
Abstract: Macroscopic quantum phenomena are common features observed in superconductors, superfluid helium, and Bose-Einstein condensates. However, most of quantum transport studies are based on a small number of dots and are not in long-range electron transport length scale. Here we show that...
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Abstract: Macroscopic quantum phenomena are common features observed in superconductors, superfluid helium, and Bose-Einstein condensates. However, most of quantum transport studies are based on a small number of dots and are not in long-range electron transport length scale. Here we show that spin-dependent resonant quantum tunneling is achieved in the macroscopic length scale (a few millimeters) corresponding to an array of up to 10(4) junctions in a series consisting of Co nanoparticles embedded in an oxygen-deficient TiO(2) matrix. This phenomenon is observed by magnetoresistance measurements at 5 K in a Coulomb blockade regime. We further present a model based on resonant spin-polarized quantum tunneling of electrons of Co particles. It occurs through resonant continuous spin-polarized defect band states located near the Fermi level of the defective TiO(2), which acts as a magnetic tunnel barrier. These results might be potentially useful for future designs of spintronic quantum devices
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COORDENAÇÃO DE APERFEIÇOAMENTO DE PESSOAL DE NÍVEL SUPERIOR - CAPES
CONSELHO NACIONAL DE DESENVOLVIMENTO CIENTÍFICO E TECNOLÓGICO - CNPQ
FUNDAÇÃO DE AMPARO À PESQUISA DO ESTADO DE SÃO PAULO - FAPESP
Fechado
Spin-dependent resonant quantum tunneling between magnetic nanoparticles on a macroscopic length scale
J. Varalda, C. A. Dartora, A. J. A. de Oliveira, W. A. Ortiz, B. Vodungbo, M. Marangolo, F. Vidal, Y. Zheng, G. G. Cabrera and D. H. Mosca
Spin-dependent resonant quantum tunneling between magnetic nanoparticles on a macroscopic length scale
J. Varalda, C. A. Dartora, A. J. A. de Oliveira, W. A. Ortiz, B. Vodungbo, M. Marangolo, F. Vidal, Y. Zheng, G. G. Cabrera and D. H. Mosca
Fontes
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Physical review. B, Condensed matter and materials physics (Fonte avulsa) |