Teja G P, Goyal Sandeep K
Indian Institute of Science Education and research, Mohali, Punjab, 140306, India.
Sci Rep. 2021 Jun 1;11(1):11439. doi: 10.1038/s41598-021-90945-6.
In this article, we study the effect of various environmental factors on intra-atomic frequency comb (I-AFC) based quantum memory. The effect of the environment is incorporated as random fluctuations and non-uniformity in the parameters such as comb spacing and the optical depth, of the frequency comb. We found that the I-AFC is viable for photon storage even for very large fluctuations in the parameters of the frequency comb, which makes I-AFC a robust platform for photon storage. Furthermore, we show that the non-uniform frequency combs without any fluctuations in the comb parameters can also yield efficient quantum memory. Since the intra-atomic frequency combs found in natural atomic systems are often non-uniform, our results suggest that a large class of these systems can be used for I-AFC based efficient quantum memory.
在本文中,我们研究了各种环境因素对基于原子内频率梳(I-AFC)的量子存储器的影响。环境的影响表现为频率梳的梳齿间距和光学深度等参数中的随机波动和不均匀性。我们发现,即使频率梳参数存在非常大的波动,I-AFC对于光子存储仍是可行的,这使得I-AFC成为一个稳健的光子存储平台。此外,我们表明,梳齿参数无任何波动的非均匀频率梳也能产生高效的量子存储器。由于在自然原子系统中发现的原子内频率梳通常是非均匀的,我们的结果表明,这类系统中的很大一部分可用于基于I-AFC的高效量子存储器。