2022
DOI: 10.1063/5.0131045
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Probe and control of photo-excited magnetization precession in Co/Pd multilayer films at low laser fluence regime

Abstract: We present femtosecond-pulse-induced precession of magnetization at low laser fluence ([Formula: see text]) regime as a function of magnetic field and laser fluence in three Co/Pd multilayer (ML) systems. These systems belong to three different regimes of magnetic anisotropy that vary with Co thickness (t[Formula: see text]): in-plane (sample 1, t[Formula: see text] = 0.74 nm), weakly out-of-plane (sample 2, t[Formula: see text] = 0.6 nm), and out-of-plane (sample 3, t[Formula: see text] = 0.40 nm). Interestin… Show more

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Cited by 3 publications
(2 citation statements)
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“…Magnetization precession has already been described in various classes of materials including ferromagnetic metals [19][20][21], semiconductors [18,22], or even in materials with a more complex spin structure such as non-collinear antiferromagnets [23]. Ferrimagnetic insulators, with yttrium iron garnet (YIG, Y 3 Fe 5 O1 2 ) as the prime representative [24], are of particular importance for spintronic applications owing to their high spin pumping efficiency [25] and the lowest known Gilbert damping [26].…”
Section: Introductionmentioning
confidence: 99%
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“…Magnetization precession has already been described in various classes of materials including ferromagnetic metals [19][20][21], semiconductors [18,22], or even in materials with a more complex spin structure such as non-collinear antiferromagnets [23]. Ferrimagnetic insulators, with yttrium iron garnet (YIG, Y 3 Fe 5 O1 2 ) as the prime representative [24], are of particular importance for spintronic applications owing to their high spin pumping efficiency [25] and the lowest known Gilbert damping [26].…”
Section: Introductionmentioning
confidence: 99%
“…This low fluence regime provides distinct advantages in determination of quasi-equilibrium material parameters, unaffected by the strong laser pulses, as discusses e.g. in [18][19][20]. The thermal excitation of magnetization has naturally been attempted in magnetic garnets as well.…”
Section: Introductionmentioning
confidence: 99%