In this thesis, nanomechanical resonators interacting with magnetic or electrical degrees of freedom are investigated. We fabricate and characterize tensile stressed silicon nitride and aluminium nanobeams and analyze the mechanics of multilayer nanobeams theoretically and experimentally. Besides, we present a magnetomechanical hybrid system allowing for the investigation of magnetostriction in thin films, study circuit electromechanics with pure silicon nitride and aluminium nanobeams and show first steps towards experiments in the quantum regime.
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In this thesis, nanomechanical resonators interacting with magnetic or electrical degrees of freedom are investigated. We fabricate and characterize tensile stressed silicon nitride and aluminium nanobeams and analyze the mechanics of multilayer nanobeams theoretically and experimentally. Besides, we present a magnetomechanical hybrid system allowing for the investigation of magnetostriction in thin films, study circuit electromechanics with pure silicon nitride and aluminium nanobeams and show...
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