This thesis investigates three facets of nanomechanics: (i) dynamics in resonator networks, (ii) sensing applications and (iii) nano-electromechanics. These aspects allowed to explore and identify mechanical dark states and investigate the complex excitation dynamics in a nano-string resonator network, investigate the impact of magnetostriction onto the mechanical properties of magnetic bi- and multi-layer nano-strings including the impact of an electrical circuit, and study possible integration schemes of nanostrings in superconducting qubits, respectively.
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This thesis investigates three facets of nanomechanics: (i) dynamics in resonator networks, (ii) sensing applications and (iii) nano-electromechanics. These aspects allowed to explore and identify mechanical dark states and investigate the complex excitation dynamics in a nano-string resonator network, investigate the impact of magnetostriction onto the mechanical properties of magnetic bi- and multi-layer nano-strings including the impact of an electrical circuit, and study possible integration...
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