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Coherent output of photons from coupled superconducting transmission line resonators controlled by charge qubits

机译:来自耦合超导传输线谐振器的光子的相干输出受电荷量子位控制

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We study the coherent control of microwave photons propagating in a superconducting waveguide consisting of coupled transmission line resonators, each of which is connected to a tunable charge qubit. While these coupled line resonators form an artificial photonic crystal with an engineered photonic band structure, the charge qubits collectively behave as spin waves in the low excitation limit, which modify the band-gap structure to slow and stop the microwave propagation. The conceptual exploration here suggests an electromagnetically controlled quantum device based on the on-chip circuit QED for the coherent manipulation of photons, such as the dynamic creation of laserlike output from the waveguide by pumping the artificial atoms for population inversion.
机译:我们研究了由耦合传输线谐振器组成的超导波导中传播的微波光子的相干控制,每个传输线谐振器都连接到可调电荷量子位。当这些耦合的线谐振器形成具有工程光子能带结构的人造光子晶体时,电荷量子位在低激发极限下共同充当自旋波,从而改变了带隙结构,从而减慢并阻止了微波的传播。这里的概念探索提出了一种基于片上电路QED的电磁控制量子装置,用于光子的相干操纵,例如通过泵浦人工原子进行粒子反转来动态创建波导输出的类激光。

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