Optical Cooling Using the Dipole Force



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Éditeur :

Springer


Collection :

Springer Theses

Paru le : 2012-06-24



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Description
This thesis unifies the dissipative dynamics of an atom, particle or structure within an optical field that is influenced by the position of the atom, particle or structure itself. This allows the identification and exploration of the fundamental ‘mirror-mediated’ mechanisms of cavity-mediated cooling leading to the proposal of a range of new techniques based upon the same underlying principles. It also reveals powerful mechanisms for the enhancement of the radiation force cooling of micromechanical systems, using both active gain and the resonance of a cavity to which the cooled species are external. This work has implications for the cooling not only of weakly-scattering individual atoms, ions and molecules, but also for highly reflective optomechanical structures ranging from nanometre-scale cantilevers to the metre-sized mirrors of massive interferometers.
Pages
188 pages
Collection
Springer Theses
Parution
2012-06-24
Marque
Springer
EAN papier
9783642297144
EAN EPUB
9783642297151

Informations sur l'ebook
Nombre pages copiables
1
Nombre pages imprimables
18
Taille du fichier
3041 Ko
Prix
94,94 €