Please use this identifier to cite or link to this item: http://elar.urfu.ru/handle/10995/131347
Title: Effect of Cu Intercalation Layer on the Enhancement of Spin-to-Charge Conversion in Py/Cu/Bi2Se3
Authors: Su, S. H.
Chong, C. -W.
Lee, J. -C.
Chen, Y. -C.
Marchenkov, V. V.
Huang, J. -C. A.
Issue Date: 2022
Publisher: MDPI
Citation: Su, SH, Chong, CW, Lee, JC, Chen, YC, Marchenkov, VV & Huang, JCA 2022, 'Effect of Cu Intercalation Layer on the Enhancement of Spin-to-Charge Conversion in Py/Cu/Bi2Se3', Nanomaterials, Том. 12, № 20, 3687. https://doi.org/10.3390/nano12203687
Su, S. H., Chong, C. W., Lee, J. C., Chen, Y. C., Marchenkov, V. V., & Huang, J. C. A. (2022). Effect of Cu Intercalation Layer on the Enhancement of Spin-to-Charge Conversion in Py/Cu/Bi2Se3. Nanomaterials, 12(20), [3687]. https://doi.org/10.3390/nano12203687
Abstract: The spin-to-charge conversion in Permalloy (Py)/Cu/Bi2Se3 is tunable by changing the Cu layer thickness. The conversion rate was studied using the spin pumping technique. The inverse Edelstein effect (IEE) length λIEE is found to increase up to ~2.7 nm when a 7 nm Cu layer is introduced. Interestingly, the maximized λIEE is obtained when the effective spin-mixing conductance (and thus Js) is decreased due to Cu insertion. The monotonic increase in λIEE with decreasing Js suggests that the IEE relaxation time (τ) is enhanced due to the additional tunnelling barrier (Cu layer) that limits the interfacial transmission rate. The results demonstrate the importance of interface engineering in the magnetic heterostructure of Py/topological insulators (TIs), the key factor in optimizing spin-to-charge conversion efficiency. © 2022 by the authors.
Keywords: INVERSE EDELSTEIN EFFECT
SPIN PUMPING
SPIN-TO-CHARGE CONVERSION
TOPOLOGICAL INSULATOR
URI: http://elar.urfu.ru/handle/10995/131347
Access: info:eu-repo/semantics/openAccess
cc-by
License text: https://creativecommons.org/licenses/by/4.0/
SCOPUS ID: 85140915311
WOS ID: 000875166600001
PURE ID: 31570227
76b8e06a-d511-4d74-be9c-c7783743729e
ISSN: 2079-4991
DOI: 10.3390/nano12203687
metadata.dc.description.sponsorship: Ministry of Science and Technology, Taiwan, MOST, (109-2112-M-006-019-MY3, 110-2124-M-006-008, 111-2124-M-006-008)
We would like to acknowledge the financial support from the Taiwan Ministry of Science and Technology under contracts MOST Grants No. 111-2124-M-006-008, 110-2124-M-006-008, and 109-2112-M-006-019-MY3.
Appears in Collections:Научные публикации ученых УрФУ, проиндексированные в SCOPUS и WoS CC

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