Administration of EMP-related Publications

overview

year 2015
author(s) J.-M. Pirkkalainen, E. Damskägg, M. Brandt, F. Massel, M.A. Sillanpää
title Squeezing of Quantum Noise of Motion in a Micromechanical Resonator
document type Paper
source Phys. Rev. Lett 115, 24 (2015)
doi 10.1103/PhysRevLett.115.243601
EMP/Horizon2020 This publication does not include a EMP/Horizon2020 acknowledgement.
abstract

A pair of conjugate observables, such as the quadrature amplitudes of harmonic motion, have fundamental fluctuations that are bound by the Heisenberg uncertainty relation. However, in a squeezed quantum state, fluctuations of a quantity can be reduced below the standard quantum limit, at the cost of increased fluctuations of the conjugate variable. Here we prepare a nearly macroscopic moving body, realized as a micromechanical resonator, in a squeezed quantum state. We obtain squeezing of one quadrature amplitude 1.1±0.4dB below the standard quantum limit, thus achieving a long-standing goal of obtaining motional squeezing in a macroscopic object.