Publications

2006

Radiation Pressure Cooling of a Micromechanical Oscillator Using Dynamical Backaction

Albert Schliesser, Pascal Del'Haye, Nima Nooshi, K. J. Vahala, Tobias Kippenberg

Physical Review Letters 97 (24) 243905 (2006) | Journal | PDF

Radiation Pressure Cooling of a Micromechanical Oscillator Using Dynamical Backaction

Albert Schliesser, Pascal Del'Haye, Nima Nooshi, K. J. Vahala, Tobias Kippenberg

Physical Review Letters 97 (24) 243905 (2006) | Journal

Cooling of a 58 MHz micromechanical resonator from room temperature to 11 K is demonstrated using cavity enhanced radiation pressure. Detuned pumping of an optical resonance allows enhancement of the blueshifted motional sideband (caused by the oscillator's Brownian motion) with respect to the redshifted sideband leading to cooling of the mechanical oscillator mode. The reported cooling mechanism is a manifestation of the effect of radiation pressure induced dynamical backaction. These results constitute an important step towards achieving ground state cooling of a mechanical oscillator.

Contact

Research Group Pascal Del'Haye

Max Planck Institute for the Science of Light
Staudtstr. 2
91058 Erlangen, Germany

pascal.delhaye@mpl.mpg.de

+49 9131 7133 137

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