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Ultralow-loss optical quantum information processing in photonic bandgap devices

机译:光子带隙器件中的超低损耗光学量子信息处理

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We have demonstrated the coherent control of photonic bandgap (PBG) devices composed of a three-level atom embedded in three-dimensional PBG structures, which enables us to strongly suppress the loss of quantum information not only during its storage but also during its processing. We find that this ultralow-loss optical quantum information processing can be realized by generating the upper atomic level splitting inside the PBG and by tuning one of the split levels to a dark line in the emission spectrum (zeros in the spectrum at certain values of the emitted photon frequency). Furthermore, we show that the coherent control may provide a basis for the universal quantum logic gate operation in quantum computing.
机译:我们已经证明了由嵌入在三维PBG结构中的三能级原子组成的光子带隙(PBG)器件的相干控制,这使我们不仅可以在量子信息的存储过程中,而且还可以在其处理过程中强烈地抑制量子信息的丢失。我们发现,可以通过在PBG内部生成较高的原子级分裂并通过将分裂级之一调整到发射光谱中的暗线(光谱中某些值的光谱为零)来实现这种超低损耗光学量子信息处理。发射的光子频率)。此外,我们表明相干控制可以为量子计算中通用量子逻辑门操作提供基础。

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