作者
Patricio Arrangoiz-Arriola, E Alex Wollack, Zhaoyou Wang, Marek Pechal, Wentao Jiang, Timothy P McKenna, Jeremy D Witmer, Raphaël Van Laer, Amir H Safavi-Naeini
发表日期
2019/7/25
期刊
Nature
卷号
571
期号
7766
页码范围
537-540
出版商
Nature Publishing Group UK
简介
The quantum nature of an oscillating mechanical object is anything but apparent. The coherent states that describe the classical motion of a mechanical oscillator do not have a well defined energy, but are quantum superpositions of equally spaced energy eigenstates. Revealing this quantized structure is only possible with an apparatus that measures energy with a precision greater than the energy of a single phonon. One way to achieve this sensitivity is by engineering a strong but nonresonant interaction between the oscillator and an atom. In a system with sufficient quantum coherence, this interaction allows one to distinguish different energy eigenstates using resolvable differences in the atom’s transition frequency. For photons, such dispersive measurements have been performed in cavity, and circuit quantum electrodynamics. Here we report an experiment in which an artificial atom senses the motional …
引用总数
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