Experimental evidence of inertial dynamics in ferromagnets
Abstract
The understanding of how spins move at pico- and femtosecond time scales is the goal of much of modern research in condensed matter physics, with implications for ultrafast and more energy-efficient data storage. However, the limited comprehension of the physics behind this phenomenon has hampered the possibility of realising a commercial technology based on it. Recently, it has been suggested that inertial effects should be considered in the full description of the spin dynamics at these ultrafast time scales, but a clear observation of such effects in ferromagnets is still lacking. Here, we report the first direct experimental evidence of inertial spin dynamics in ferromagnetic thin films in the form of a nutation of the magnetisation at a frequency of approximately 0.6 THz. This allows us to evince that the angular momentum relaxation time in ferromagnets is on the order of 10 ps.
Keywords
Cite
@article{arxiv.1910.11284,
title = {Experimental evidence of inertial dynamics in ferromagnets},
author = {Kumar Neeraj and Nilesh Awari and Sergey Kovalev and Debanjan Polley and Nanna Zhou Hagström and Sri Sai Phani Kanth Arekapudi and Anna Semisalova and Kilian Lenz and Bertram Green and Jan-Christoph Deinert and Igor Ilyakov and Min Chen and Mohammed Bowatna and Valentino Scalera and Massimiliano d'Aquino and Claudio Serpico and Olav Hellwig and Jean-Eric Wegrowe and Michael Gensch and Stefano Bonetti},
journal= {arXiv preprint arXiv:1910.11284},
year = {2019}
}
Comments
10 pages, 4 figures, 1 table