Observation of radiation pressure shot noise on a macroscopic object
T P Purdy1, R W Peterson, C A Regal
1JILA, University of Colorado and National Institute of Standards and Technology, Boulder, CO 80309, USA. tpp@jila.colorado.edu
Abstract:
The quantum mechanics of position measurement of a macroscopic object is typically inaccessible because of strong coupling to the environment and classical noise. In this work, we monitor a mechanical resonator subject to an increasingly strong continuous position measurement and observe a quantum mechanical back-action force that rises in accordance with the Heisenberg uncertainty limit. For our optically based position measurements, the back-action takes the form of a fluctuating radiation pressure from the Poisson-distributed photons in the coherent measurement field, termed radiation pressure shot noise. We demonstrate a back-action force that is comparable in magnitude to the thermal forces in our system. Additionally, we observe a temporal correlation between fluctuations in the radiation force and in the position of the resonator.
Related Concept Videos
Radiation Pressure: Problem Solving
The average value of the rate of momentum transfer divided by the absorbing area represents the average force per...
Momentum And Radiation Pressure
Sound as Pressure Waves
The pressure fluctuation depends on the difference in displacements between the successive points in the...
Concept of Pressure at a Point
In a fluid at rest, pressure acts equally in...
Shock Waves
When the source's speed approaches the speed of sound, constructive interference between successive wavefronts emitted by the source occurs immediately behind it. Initially, scientists believed that this constructive interference would result in such high pressures...
Excess Pressure Inside a Drop and a Bubble

