论文标题

带有机械振荡器的量子力学免费子系统

Quantum-mechanics free subsystem with mechanical oscillators

论文作者

de Lépinay, Laure Mercier, Ockeloen-Korppi, Caspar F., Woolley, Matthew J., Sillanpää, Mika A.

论文摘要

量子力学设定了振荡器位置连续测量精度的限制。在这里,我们展示了如何通过从两个物理振荡器构造一个有效的振荡器来测量振荡器而无需测量的量子。我们使用两个微力机械振荡器意识到了这样的无量子力学子系统,并显示了两个集体四二次振荡的测量值,同时在它们的两个量子上逃避了$ 8 $ beactaction,在两个全量子限制的两个因子内获得了总噪声。这促进了对弱力的检测以及振荡器非经典运动状态的产生和测量。此外,我们直接通过测量Duan数量$ 1.4 $分贝的分离性下方的可分离性约束,直接验证了两个振荡器的量子纠缠。

Quantum mechanics sets a limit for the precision of continuous measurement of the position of an oscillator. Here we show how it is possible to measure an oscillator without quantum backaction of the measurement by constructing one effective oscillator from two physical oscillators. We realize such a quantum-mechanics free subsystem using two micromechanical oscillators, and show the measurements of two collective quadratures while evading the quantum backaction by $8$ decibels on both of them, obtaining a total noise within a factor two of the full quantum limit. This facilitates detection of weak forces and the generation and measurement of nonclassical motional states of the oscillators. Moreover, we directly verify the quantum entanglement of the two oscillators by measuring the Duan quantity $1.4$ decibels below the separability bound.

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