论文标题
稀有地球掺杂纳米颗粒中的频率 - 曲线连贯的电磁记忆
A Frequency-Multiplexed Coherent Electro-Optic Memory in Rare Earth Doped Nanoparticles
论文作者
论文摘要
光的量子记忆是量子技术中必不可少的组成部分,例如长距离量子通信和分布式量子计算。最近的研究表明,可以在稀土掺杂的纳米颗粒中观察到较长的光学和自旋相干寿命,从而对散装材料打开了令人兴奋的可能性。用于增强与光和其他量子系统的耦合以及材料设计。在这里,我们使用Stark Echo调制内存(SEMM)Quantum协议报告了欧盟$^{3+} $的连贯的灯存储。我们首先在15 GHz的带宽上测量50 kHz/(v/cm)的几乎恒定的Stark系数,这对于宽带操作来说是有希望的。然后,使用SEMM的光存储在最多40美元$ $ s的时间内显示。还存储了具有两个不同频率的脉冲,确认了频率 - 拼写能力,并用于证明记忆高相位的保真度。
Quantum memories for light are essential components in quantum technologies like long-distance quantum communication and distributed quantum computing. Recent studies have shown that long optical and spin coherence lifetimes can be observed in rare earth doped nanoparticles, opening exciting possibilities over bulk materials e.g. for enhancing coupling to light and other quantum systems, and material design. Here, we report on coherent light storage in Eu$^{3+}$:Y$_2$O$_3$ nanoparticles using the Stark Echo Modulation Memory (SEMM) quantum protocol. We first measure a nearly constant Stark coefficient of 50 kHz/(V/cm) across a bandwidth of 15 GHz, which is promising for broadband operation. Storage of light using SEMM is then demonstrated for times up to 40 $μ$s. Pulses with two different frequencies are also stored, confirming frequency-multiplexing capability, and are used to demonstrate the memory high phase fidelity.