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Detecting Phase-Resolved Magnetization Dynamics by Magneto-Optic Effects at 1550 nm Wavelength

机译:通过在1550nm波长下通过磁光效应检测相位解析的磁化动力学

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We demonstrate the detection of phase-resolved magnetization dynamics with combinatorial magneto-optic Kerr and Faraday effects. The method uses a continuous-wave laser that is amplitude-modulated at the spin dynamic frequencies and thus allows for coherent tracking of the spin dynamics, akin a “lock-in”-type measurement. In particular, our method, using a single 1550 nm wavelength, probes simultaneously the ferromagnetic (FM) resonance of Y 3 Fe 5 O 12 (YIG) and Permalloy (Py = Ni 80 Fe 20 ) in a YIG-Py heterostructure. The fiber-based magneto-optic components also have the advantage of being made into a compact, tabletop or even portable system with yet robust measurement performances. We believe that our method will be found useful in studying hybrid quantum magnonic systems and/or investigating phase-resolved spin dynamics in nanomagnet structures involving both FM insulators and metals.
机译:我们证明了通过组合磁光克尔和法拉第效应检测相位解析的磁化动态。该方法使用在旋转动态频率下进行幅度调制的连续波激光器,从而允许旋转动力学的连贯跟踪,类似于“锁定”型测量。特别地,我们的方法,使用单个1550nm波长,同时探测y 3 fe 5 o 12 (yig)和permoloy(py = ni 80 fe 20 )中的yig-py异质结构。基于纤维的磁光部件还具有具有且具有稳健测量性能的紧凑型,桌面或甚至便携式系统的优点。我们认为,我们的方法将被发现用于研究混合量子磁力系统和/或研究涉及FM绝缘子和金属的纳米磁体结构中的相位分​​辨的旋转动力学。

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