Cavity Optomechanics: Back-Action at the Mesoscale. T. J. Kippenberg1,*,†,; K. J. Vahala2,*. 1 Max Planck Institute für Quantenoptik, Recent experiments have reached a regime where the back- action of photons caused by radiation pressure can influence the optomechanical dynamics, giving . Cavity Optomechanics: Backaction-Cooling of Mechanical Oscillators Kippenberg, T. J. & Vahala, K. J. Cavity Optomechanics: Backaction at the mesoscale.

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Thompson 4 Estimated H-index: Ref 40 Source Add To Collection. Cooling of a Mirror by Radiation Pressure. Showing of 3 references. Recent experiments have reached a regime where the back-action of photons caused by radiation pressure can influence the optomechanical dynamics, giving rise to a host of long-anticipated phenomena. Ultralow-dissipation optomechanical resonators on a chip nature photonics [IF: References Publications referenced by this paper.

Deterministic preparation of highly non-classical macroscopic quantum states Ludovico LatmiralFlorian Mintert Thank you for your interest in spreading the word about Science. Download PDF Cite this paper. Other Papers By First Author.


Observation of quantum-measurement backaction with an ultracold atomic gas. Olivier Arcizet 22 Estimated H-index: Constanze Metzger 5 Estimated H-index: Here we review these developments and discuss the opportunities for innovative technology as well as for fundamental science. Dynamical backaction cooling with free electrons.

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Cavity optomechanics: back-action at the mesoscale.

Quasicrystals Tessellating tiny tetrahedrons. The coupling of optical and mechanical degrees of freedom is the underlying principle of many techniques to measure mechanical displacement, from macroscale gravitational wave detectors to microscale cantilevers used in scanning probe microscopy.


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Cavity optomechanics: back-action at the mesoscale.

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