The author compares two nonlinear models for YIG sphere bistability, finds that his rapid disentanglement model fits jump frequencies better than the standard magnon-Kerr model, and takes this as indirect support for spontaneous disentanglement.
Cavity Optomagnonics
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abstract
In the recent years a series of experimental and theoretical efforts have centered around a new topic: the coherent, cavity-enhanced interaction between optical photons and solid state magnons. The resulting emerging field of Cavity Optomagnonics is of interest both at a fundamental level, providing a new platform to study light-matter interaction in confined structures, as well as for its possible relevance for hybrid quantum technologies. In this chapter I introduce the basic concepts of Cavity Optomagnonics and review some theoretical developments.
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Disentanglement--induced bistability in a magnetic resonator
The author compares two nonlinear models for YIG sphere bistability, finds that his rapid disentanglement model fits jump frequencies better than the standard magnon-Kerr model, and takes this as indirect support for spontaneous disentanglement.