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  Accessing ultrafast spin-transport dynamics in copper using broadband terahertz spectroscopy

Jechumtál, J., Rouzegar, R., Gückstock, O., Denker, C., Hoppe, W., Remy, Q., et al. (in preparation). Accessing ultrafast spin-transport dynamics in copper using broadband terahertz spectroscopy.

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arXiv:2310.12082.pdf (Preprint), 986KB
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Jechumtál, Jiří, Author
Rouzegar, Reza1, Author           
Gückstock, Oliver1, Author           
Denker, Christian, Author
Hoppe, Wolfgang, Author
Remy, Quentin, Author
Seifert, Tom1, Author           
Kubaščík, Peter, Author
Woltersdorf, Georg, Author
Brouwer, Piet W., Author
Münzenberg, Markus, Author
Kampfrath, Tobias1, Author                 
Nádvorník, Lukáš, Author
Affiliations:
1Physical Chemistry, Fritz Haber Institute, Max Planck Society, ou_634546              

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Free keywords: Condensed Matter, Mesoscale and Nanoscale Physics, cond-mat.mes-hall, Condensed Matter, Materials Science, cond-mat.mtrl-sci
 Abstract: We study the spatiotemporal dynamics of ultrafast electron spin transport across nanometer-thick copper layers using broadband terahertz spectroscopy. Our analysis of temporal delays, broadening and attenuation of the spin-current pulse revealed ballistic-like propagation of the pulse peak, approaching the Fermi velocity, and diffusive features including a significant velocity dispersion. A comparison to the frequency-dependent Ficks law identified the diffusion-dominated transport regime for distances larger than 2 nm. The findings lie the groundwork for designing future broadband spintronic devices.

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Language(s): eng - English
 Dates: 2023-10-18
 Publication Status: Not specified
 Pages: 4
 Publishing info: -
 Table of Contents: -
 Rev. Type: -
 Identifiers: arXiv: 2310.12082
 Degree: -

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