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May 13, 2022 - Piyush AGARWAL
Agarwal Piyush; Yang Yingshu; Lourembam James; Medwal Rohit; Battiato Marco; Singh Ranjan, 2022, "Replication Data for: Terahertz Spintronic Magnetometer (TSM)", https://doi.org/10.21979/N9/WJDQAH, DR-NTU (Data), V1
A ferromagnetic metal consists of localized electrons and conduction electrons coupled through strong exchange interaction. Together, these localized electrons contribute to the magnetization of the system, while conduction electrons lead to the formation of spin and charge curre... |
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Figure S3: (a) AFM image of bilayer Qz/CoFeB(1.8nm)/Pt(2nm) (b) AFM image of trilayer Qz/W(2nm)/CoFeB(1.8nm)/Pt(2nm) (c) AFM image of monolayer Qz/CoFeB(5nm). A very low mean roughness indicates the uniform surface for all the samples. Moreover, considering the translation of a s... |
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Figure S3(c): AFM file for Qz/CoFeB |
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Figure S3(c): AFM roughness calculation for Qz/CoFeB |
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Figure S3(a): AFM file for Qz/CoFeB/Pt |
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Figure S3(a): AFM roughness calculation for Qz/CoFeB/Pt |
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Figure 1(b,c): Comparing hysteresis measurement from heterostructure when the magnetic field is applied perpendicular to FM easy axis (b) M-H hysteresis measured from commercial VSM system (c) THz hysteresis measured from TSM |
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Figure 1(d,e): Comparing hysteresis measurement from heterostructure when the magnetic field is applied parallel to FM easy axis (EA) (d) M-H hysteresis measured from commercial VSM system (e) THz hysteresis measured from TSM system. |
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Figure 2(a): THz amplitude and charge current when the applied magnetic field is perpendicular to the FM easy axis: THz-H hysteresis measured at variable laser fluence on Quartz/Co40Fe40B20(1.8nm)/Pt(2nm) |
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Figure 2(b): THz amplitude and charge current when the applied magnetic field is perpendicular to the FM easy axis: THz pulse amplitude (black spheres) and coercivity (blue spheres) as a function of laser fluence. Solid lines are drawn to guide the eye |
