论文标题

直接观察确定性宏观纠缠

Direct observation of deterministic macroscopic entanglement

论文作者

Kotler, Shlomi, Peterson, Gabriel A., Shojaee, Ezad, Lecocq, Florent, Cicak, Katarina, Kwiatkowski, Alex, Geller, Shawn, Glancy, Scott, Knill, Emanuel, Simmonds, Raymond W., Aumentado, José, Teufel, John D.

论文摘要

当不同的物体以高度的相关性移动以至于无法单独描述它们时,机械系统的量子纠缠就会出现。尽管量子力学大概适用于各种大小的对象,但直接观察纠缠变得挑战,随着质量的增加,需要消失的小误差,需要测量和控制。在这里,使用脉冲机电,我们决定纠缠两个机械鼓,质量为70 pg。通过几乎量子限制的测量,我们对两个鼓的位置和动量四元素进行了量子层造影,从而直接观察到纠缠。这种纠缠的宏观系统被唯一地准备在量子力学的基本测试中,使感应超出标准量子极限,并作为未来量子网络的长期寿命节点的功能。

Quantum entanglement of mechanical systems emerges when distinct objects move with such a high degree of correlation that they can no longer be described separately. Although quantum mechanics presumably applies to objects of all sizes, directly observing entanglement becomes challenging as masses increase, requiring measurement and control with a vanishingly small error. Here, using pulsed electromechanics, we deterministically entangle two mechanical drumheads with masses of 70 pg. Through nearly quantum-limited measurements of the position and momentum quadratures of both drums, we perform quantum state tomography and thereby directly observe entanglement. Such entangled macroscopic systems are uniquely poised to serve in fundamental tests of quantum mechanics, enable sensing beyond the standard quantum limit, and function as long-lived nodes of future quantum networks.

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