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arxiv: 1507.04209 · v2 · pith:MH27I5DKnew · submitted 2015-07-15 · ❄️ cond-mat.mes-hall · quant-ph

Squeezing of quantum noise of motion in a micromechanical resonator

classification ❄️ cond-mat.mes-hall quant-ph
keywords quantumfluctuationssqueezingbelowconjugatelimitmacroscopicmicromechanical
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A pair of conjugate observables, such as the quadrature amplitudes of harmonic motion, have fundamental fluctuations which 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 $1.1 \pm 0.4$ dB below the standard quantum limit, thus achieving a long-standing goal of obtaining motional squeezing in a macroscopic object.

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