Phase-resolving spin-wave microscopy using infrared strobe light
Yuzan Xiong, Andrew Christy, Muntasir Mahdi, Rui Sun, Yi Li, Robert D., Geil, James F. Cahoon, Frank Tsui, Binbin Yang, Tae Hee Kim, Jia-Mian Hu,, Dali Sun, Michael C. Hamilton, Valentine Novosad, Wei Zhang

TL;DR
This paper introduces an infrared strobe light technique for high-resolution spectroscopic and imaging analysis of magnetization dynamics, enabling phase-resolved spin wave mapping in magnonic systems.
Contribution
It presents a novel optical method using infrared strobe light for concurrent spectroscopic and spatial imaging of spin dynamics with phase resolution.
Findings
Successfully mapped spin wave wavefronts in YIG.
Demonstrated phase-sensitive imaging of spin precession.
Enabled direct phase contrast imaging without optical references.
Abstract
The needs for sensitively and reliably probing magnetization dynamics have been increasing in various contexts such as studying novel hybrid magnonic systems, in which the spin dynamics strongly and coherently couple to other excitations, including microwave photons, light photons, or phonons. Recent advances in quantum magnonics also highlight the need for employing magnon phase as quantum state variables, which is to be detected and mapped out with high precision in on-chip micro- and nano-scale magnonic devices. Here, we demonstrate a facile optical technique that can directly perform concurrent spectroscopic and imaging functionalities with spatial- and phase-resolutions, using infrared strobe light operating at 1550-nm wavelength. To showcase the methodology, we spectroscopically studied the phase-resolved spin dynamics in a bilayer of Permalloy and Y3Fe5O12 (YIG), and spatially…
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Taxonomy
TopicsMagnetic properties of thin films · Magneto-Optical Properties and Applications · Advanced Electron Microscopy Techniques and Applications
