论文标题
光子在PR:YSO中使用原子频率梳的光子回声 - 实验和半经典理论
Photon echoes using atomic frequency combs in Pr:YSO -- experiment and semiclassical theory
论文作者
论文摘要
研究了稀土掺杂晶体中的光子回声,以了解使用高精细结构系统中使用原子频率梳子(AFC)方案制作宽带量子记忆的挑战。 Pr^{3+}的超精细结构构成了这个目标的障碍,因为与超精细过渡相关的频率改变了外部强加的频率下的调制图片。当前的工作着重于中间情况,在中间情况下,超细间距可与梳子间距相当,梳子间距是最近考虑的一种具有挑战性的制度。在此制度中运行可以促进在此类系统中较大的光谱范围内存储量子信息。 在这项工作中,我们使用光学间距的光学梳子制备宽带AFC,其尺寸从1 MHz到16 MHz,并以精细的步骤进行测量。我们使用光学梳子作为速率方程代码或密度矩阵代码的输入来预测光谱和回声,从而计算人口的重新分布。然后,我们使用重新分布的种群用作使用频率依赖性介电函数的半经典理论的输入。两组预测都给出了光子回声的良好但不同的描述。
Photon echoes in rare-earth-doped crystals are studied to understand the challenges of making broadband quantum memories using the atomic frequency comb (AFC) protocol in systems with hyperfine structure. The hyperfine structure of Pr^{3+} poses an obstacle to this goal because frequencies associated with the hyperfine transitions change the simple picture of modulation at an externally imposed frequency. The current work focuses on the intermediate case where the hyperfine spacing is comparable to the comb spacing, a challenging regime that has recently been considered. Operating in this regime may facilitate storing quantum information over a larger spectral range in such systems. In this work, we prepare broadband AFCs using optical combs with tooth spacings ranging from 1 MHz to 16 MHz in fine steps, and measure transmission spectra and photon echoes for each. We predict the spectra and echoes theoretically using the optical combs as input to either a rate equation code or a density matrix code, which calculates the redistribution of populations. We then use the redistributed populations as input to a semiclassical theory using the frequency-dependent dielectric function. The two sets of predictions each give a good, but different account of the photon echoes.