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APS -APS March Meeting 2017 - Event - Single photon devices in superconducting circuits using an atom in front of a mirror

机译:APS -APS 2017年3月会议-活动-超导电路中的单光子设备使用镜前原子

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In circuit QED, artificial atoms made of superconducting circuits interact with microwave photons routed via superconducting transmission lines. The transmission line acts as a bath to which the atoms are coupled and leads to relaxation among other effects. Terminating the transmission line at one end (by grounding for example) is analogous to having a mirror for the field. This boundary condition can be used to change the local density of states of the field with which the atom interacts, so much so that a particular transition of the atom can be completely decoupled from the transmission line. The ``mirror" can be also made movable by using a SQUID at the terminating point, providing additional degree of freedom. In this talk, we present recent results on how to use these effects to make efficient single photon devices such as photon sources in the microwave regime.
机译:在电路QED中,由超导电路制成的人造原子与通过超导传输线路由的微波光子相互作用。传输线充当原子与之耦合的浴,并导致其他效应中的弛豫。在一端终止传输线(例如通过接地)类似于在现场安装一面镜子。该边界条件可用于改变原子与之相互作用的场的局部状态密度,以至于可以使原子的特定跃迁完全与传输线分离。通过在终端处使用SQUID,还可以使“镜子”移动,从而提供额外的自由度。微波制度。

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