论文标题
由电形效应控制的集成光量子记忆
Integrated optical quantum memory controlled by electro-optic effect
论文作者
论文摘要
集成的光学量子记忆是同步大量量子节点的可扩展解决方案。如果没有紧凑的量子记忆,就不可能进行一些惊人的量子应用,例如分布式量子计算和量子传感器网络。我们建议分别为稀土离子和稀土离子和氯锂晶体晶体分配记忆要求,而不是找到满足片上量子内存的所有要求的特定材料。具体而言,光量子态通过利用尼贝特锂的电效应效应,将光量子状态储存在掺杂的二氧化锂微腔中。腔频率可以通过外部电场移动,从而改变腔和集体原子激发之间的共振条件。该效果进一步用于抑制或增强光子回波的发射。我们计算出的结果表明,可以实现高效率和低噪声性能。
Integrated optical quantum memories are a scalable solution to synchronize a large number of quantum nodes. Without compact quantum memories, some astonishing quantum applications such as distributed quantum computing and quantum sensor networks would not be possible. Rather than find a specific material that meets all the requirements of an on-chip quantum memory as other protocols usually do, we propose to assign the memory requirements on coherent storage and controllability to rare earth ions and a lithium niobate crystal, respectively. Specifically, optical quantum states are stored in an erbium-doped lithium niobate micro-cavity by utilizing the electro-optic effect of lithium niobate. The cavity frequency can be shifted by an external electric field, thus modifying the resonance condition between the cavity and the collective atomic excitation. This effect is further used to suppress or enhance the emission of photon echoes. Our calculated results show that high efficiency and low noise performance is achievable.