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Coherent manipulation of a solid-state artificial atom with few photons

机译:很少有光子的固态人造原子的相干操纵

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摘要

In a quantum network based on atoms and photons, a single atom should control the photon state and, reciprocally, a single photon should allow the coherent manipulation of the atom. Both operations require controlling the atom environment and developing efficient atom–photon interfaces, for instance by coupling the natural or artificial atom to cavities. So far, much attention has been drown on manipulating the light field with atomic transitions, recently at the few-photon limit. Here we report on the reciprocal operation and demonstrate the coherent manipulation of an artificial atom by few photons. We study a quantum dot-cavity system with a record cooperativity of 13. Incident photons interact with the atom with probability 0.95, which radiates back in the cavity mode with probability 0.96. Inversion of the atomic transition is achieved for 3.8 photons on average, showing that our artificial atom performs as if fully isolated from the solid-state environment.
机译:在基于原子和光子的量子网络中,单个原子应控制光子状态,反之,单个光子应允许原子的相干操纵。两种操作都需要控制原子环境并开发有效的原子-光子界面,例如通过将天然或人工原子耦合到腔体。到目前为止,在原子数跃迁上操纵光场已经引起了很多关注,最近在数光子极限处。在这里,我们报告了相互的操作,并证明了几个光子对人造原子的相干操纵。我们研究了具有13个记录的协同性的量子点腔系统。入射光子以0.95的概率与原子相互作用,该光子以0.96的概率在腔模中辐射回去。平均3.8个光子可以实现原子跃迁的反转,这表明我们的人造原子的性能似乎与固态环境完全隔离。

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