Project Details
Description
Recently, many experimental techniques and theoretical models have been devoted to develope novel spintronics device, and the “interfacial magnetoelectric” effect is one of the vital issues to dominate the charge-, spin-, and magneto-transport properties in nmscale hetoerostructures. In this project, our self-developed “JunPy” package combines (1) first-principles calculation with noncollinear spin-orbit coupling, external bias, mechanical strain, magnetic field, gate voltage, and ferroelectric control with (2) non-equilibrium Green’s function (NEGF) method and generalized tight-binding model to provide both numerical simulation and analytical analysis for (a) multi-functional modulation spin transport in TMD nanoribbon based heterostructures, (b) out-of-plane current driven spin-transfer torque and voltage-controlled magnetic anisotropy torque in trilayer system, and (c) in-plane current driven spin-orbit torque in FM/HF bilayer system. We believe this multi-discipline and highly challenging work, involving computer programming, analytical derivation, and first-principles calculation, may provide promising simulation tools for next-generation, multifunctional and low-energy consumption spintronics devices.
| Status | Finished |
|---|---|
| Effective start/end date | 1/08/21 → 31/07/23 |
Keywords
- spin transport
- magnetotransport
- magnetoelectric effect
- spin-transfer torque
- spin-orbit coupling
- spin-orbit torque
Fingerprint
Explore the research topics touched on by this project. These labels are generated based on the underlying awards/grants. Together they form a unique fingerprint.
Research output
- 9 Article
-
Emergent magnetic-nonmagnetic transition in strain-tuned zigzag-edged PtSe2 nanoribbon
Ho, H. M., Lien, S. C. & Tang, Y. H., Jan 2023, In: Physical Review Research. 5, 1, 013054.Research output: Contribution to journal › Article › peer-review
Open Access2 Scopus citations -
Validity of DFT-based spin-orbit torque calculation for perpendicular magnetic anisotropy in iron thin films
Huang, B. H., Lai, Y. F. & Tang, Y. H., 1 Jan 2023, In: AIP Advances. 13, 1, 015034.Research output: Contribution to journal › Article › peer-review
Open Access3 Scopus citations -
A first-principles study of magnetic switching and hysteresis effect in the ferromagnetic Fe metal
Tang, Y. H., Huang, T. S. & Tsai, M. H., Dec 2022, In: Chinese Journal of Physics. 80, p. 183-189 7 p.Research output: Contribution to journal › Article › peer-review
3 Scopus citations