论文标题

最佳的宽频频率转换通过宏伟的传感器

Optimal broad-band frequency conversion via a magnomechanical transducer

论文作者

Engelhardt, F., Bittencourt, V. A. S. V., Huebl, H., Klein, O., Kusminskiy, S. Viola

论文摘要

在现代量子信息领域中,开发量子信号的有效和广泛频率转换的方案是一个持续的挑战。特别是微波和光学信号之间的相干转换是朝着长距离量子通信的重要里程碑。在这项工作中,我们提出了一种两阶段的转换方案,该方案在微波和光光子之间采用了磁性激发和机械激励之间的谐振相互作用。基于优化条件下Yttrium Iron Garnet条件下耦合强度的估计,我们预测无需匹配合作社的统一转换效率即可接近统一转换效率。我们预测,在耦合强度的数量级上,最大效率区域的转换带宽可以进一步增加,以降低转化效率。

Developing schemes for efficient and broad-band frequency conversion of quantum signals is an ongoing challenge in the field of modern quantum information. Especially the coherent conversion between microwave and optical signals is an important milestone towards long-distance quantum communication. In this work, we propose a two-stage conversion protocol, employing a resonant interaction between magnetic and mechanical excitations as a mediator between microwave and optical photons. Based on estimates for the coupling strengths under optimized conditions for yttrium iron garnet, we predict close to unity conversion efficiency without the requirement of matching cooperativities. We predict a conversion bandwidth in the regions of largest efficiency on the order of magnitude of the coupling strengths which can be further increased at the expense of reduced conversion efficiency.

扫码加入交流群

加入微信交流群

微信交流群二维码

扫码加入学术交流群,获取更多资源