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Imaging the vacuum field in a high-Q cavity with single atoms as a nanoscopic probe

机译:使用单个原子作为纳米探针在高Q腔中成像真空场

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When an excited atom is placed in a high-Q cavity, it is driven by the cavity vacuum field at its position and emits a photon into the cavity mode. Based on this principle, we have performed 3D imaging of the vacuum field in a Fabry-Perot cavity. Atomic position localization is achieved by using a nanohole-array atom-beam aperture scannable in front of the cavity mode. The transit-time broadening in the atom-cavity detuning curve provides the vacuum field profile along the direction of atomic beam. In this way the 3D profile of the vacuum-field intensity is imaged with a spatial resolution of about 170 nm, which is mostly limited by the nanohole diameter.
机译:当激发原子放置在高Q腔中时,它受到腔真空场在其位置的驱动,并发出光子进入腔模。基于此原理,我们对Fabry-Perot腔中的真空场进行了3D成像。通过使用可在腔模式前面扫描的纳米孔阵列原子束孔径来实现原子位置定位。原子腔失谐曲线中的传播时间展宽提供了沿原子束方向的真空场分布。以此方式,以约170nm的空间分辨率来成像真空场强度的3D轮廓,这主要受纳米孔直径的限制。

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