论文标题

频率合成维度中光子的任意线性变换

Arbitrary linear transformations for photons in the frequency synthetic dimension

论文作者

Buddhiraju, Siddharth, Dutt, Avik, Minkov, Momchil, Williamson, Ian A. D., Fan, Shanhui

论文摘要

在涵盖经典信号处理,通信系统,量子信息处理和机器学习的许多光子应用中,任意线性转换至关重要。在这里,我们提出了一种新的光子体系结构,通过利用光子的合成频率维度来实现任意线性变换。我们的结构由动态调制的微环谐振器组成,这些谐振器在单个波导携带的多个频率模式之间实现可调耦合。通过使用自动分化的这些短期和远程耦合的逆设计,我们在输入和输出频率模式之间的合成空间中实现了任意散射矩阵,并具有接近统一的保真度和有利的缩放。我们表明,可以重新配置相同的物理结构,以实现各种各样的操作,包括单频转换,非互联网频率转换以及统一以及非自动转换。我们的方法使紧凑,可扩展和可重新配置的集成光子体系结构能够使用当前的最新技术在经典和量子域中实现任意线性变换。

Arbitrary linear transformations are of crucial importance in a plethora of photonic applications spanning classical signal processing, communication systems, quantum information processing and machine learning. Here, we present a new photonic architecture to achieve arbitrary linear transformations by harnessing the synthetic frequency dimension of photons. Our structure consists of dynamically modulated micro-ring resonators that implement tunable couplings between multiple frequency modes carried by a single waveguide. By inverse design of these short- and long-range couplings using automatic differentiation, we realize arbitrary scattering matrices in synthetic space between the input and output frequency modes with near-unity fidelity and favorable scaling. We show that the same physical structure can be reconfigured to implement a wide variety of manipulations including single-frequency conversion, nonreciprocal frequency translations, and unitary as well as non-unitary transformations. Our approach enables compact, scalable and reconfigurable integrated photonic architectures to achieve arbitrary linear transformations in both the classical and quantum domains using current state-of-the-art technology.

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