Spin-to-charge conversion at KTaO3(111) interfaces
Publication
, Journal Article
Al-Tawhid, AH; Sun, R; Comstock, AH; Kumah, DP; Sun, D; Ahadi, K
Published in: Applied Physics Letters
March 1, 2025
Rashba spin-orbit coupling locks the spin with the momentum of charge carriers at the broken inversion interfaces, which could generate a large spin galvanic response. Here, we demonstrate spin-to-charge conversion (inverse Rashba-Edelstein effect) in KTaO
Duke Scholars
Published In
Applied Physics Letters
DOI
ISSN
0003-6951
Publication Date
March 1, 2025
Volume
126
Issue
9
Related Subject Headings
- Applied Physics
- 51 Physical sciences
- 40 Engineering
- 10 Technology
- 09 Engineering
- 02 Physical Sciences
Citation
APA
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ICMJE
MLA
NLM
Al-Tawhid, A. H., Sun, R., Comstock, A. H., Kumah, D. P., Sun, D., & Ahadi, K. (2025). Spin-to-charge conversion at KTaO3(111) interfaces. Applied Physics Letters, 126(9). https://doi.org/10.1063/5.0247001
Al-Tawhid, A. H., R. Sun, A. H. Comstock, D. P. Kumah, D. Sun, and K. Ahadi. “Spin-to-charge conversion at KTaO3(111) interfaces.” Applied Physics Letters 126, no. 9 (March 1, 2025). https://doi.org/10.1063/5.0247001.
Al-Tawhid AH, Sun R, Comstock AH, Kumah DP, Sun D, Ahadi K. Spin-to-charge conversion at KTaO3(111) interfaces. Applied Physics Letters. 2025 Mar 1;126(9).
Al-Tawhid, A. H., et al. “Spin-to-charge conversion at KTaO3(111) interfaces.” Applied Physics Letters, vol. 126, no. 9, Mar. 2025. Scopus, doi:10.1063/5.0247001.
Al-Tawhid AH, Sun R, Comstock AH, Kumah DP, Sun D, Ahadi K. Spin-to-charge conversion at KTaO3(111) interfaces. Applied Physics Letters. 2025 Mar 1;126(9).
Published In
Applied Physics Letters
DOI
ISSN
0003-6951
Publication Date
March 1, 2025
Volume
126
Issue
9
Related Subject Headings
- Applied Physics
- 51 Physical sciences
- 40 Engineering
- 10 Technology
- 09 Engineering
- 02 Physical Sciences