Get Free Shipping on orders over $49
Springer Theses : Springer Theses - André Xuereb

Springer Theses

By: André Xuereb

Paperback | 18 July 2014

At a Glance

Paperback


$169.75

or 4 interest-free payments of $42.44 with

 or 

Ships in 5 to 7 business days

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.

More in Low Temperature Physics

Quantum Hydrodynamics and Turbulence - Makoto Tsubota
Experimental Techniques in Low-Temperature Physics : Fourth Edition - Guy K. White
The Dawning of Gauge Theory : Princeton Series in Physics - Lochlainn O'Raifeartaigh
Princeton Problems in Physics with Solutions : Princeton Paperbacks - Nathan Newbury
Quantum Mechanics and Its Emergent Macrophysics - Geoffrey L. Sewell

RRP $215.00

$166.75

22%
OFF
An Introduction to Materials Science - Wenceslao Gonzlez-Vias

RRP $190.00

$148.75

22%
OFF
Quantum Optics : An Introduction - Mark Fox
Low-Temperature Physics - Christian Enss

$179.75