论文标题
核量子光学的逆设计:从人工X射线多级方案到光谱可观察
Inverse design in nuclear quantum optics: From artificial x-ray multi-level schemes to spectral observables
论文作者
论文摘要
嵌入在薄膜腔中的Mössbauer核的集合形成了X射线量子光学元件的有前途的平台。一个关键特征是,联合核腔系统可以被视为低兴奋性方案中的人造X射线多级方案。使用空腔环境,可以将这种水平方案的结构和参数定制,而不是裸露核提供的结构和参数。但是,到目前为止,提供所需量子光学功能的空腔结构的直接确定仍然是一个开放的挑战。在这里,我们使用逆设计方法解决了这一挑战。作为第一个定性结果,我们表明,基于散射的可观察物的既定拟合方法并非唯一,因为如果基于不同散射通道中的可观察力,则分析可能会导致相同腔的不同多层系统。由此激励,我们将散射标志和微观级别方案区分开为单独的设计目标,而后者则由\ textit {ab intio}方法唯一确定。我们发现,这两个设计目标都是实际相关性的,并且在潜在应用方面相互补充。我们使用示例任务(例如实现电磁引起的透明度)来证明这两个目标的逆设计。我们的结果为涉及更复杂X射线腔设计的核量子光学元件的新应用铺平了道路。
Ensembles of Mössbauer nuclei embedded in thin-film cavities form a promising platform for x-ray quantum optics. A key feature is that the joint nuclei-cavity system can be considered as an artificial x-ray multi-level scheme in the low-excitation regime. Using the cavity environment, the structure and parameters of such level schemes can be tailored beyond those offered by the bare nuclei. However, so far, the direct determination of a cavity structure providing a desired quantum optical functionality has remained an open challenge. Here, we address this challenge using an inverse design methodology. As a first qualitative result, we show that the established fitting approach based on scattering observables in general is not unique, since the analysis may lead to different multi-level systems for the same cavity if based on observables in different scattering channels. Motivated by this, we distinguish between scattering signatures and the microscopic level scheme as separate design objectives, with the latter being uniquely determined by an \textit{ab initio} approach. We find that both design objectives are of practical relevance and that they complement each other regarding potential applications. We demonstrate the inverse design for both objectives using example tasks, such as realising electromagnetically induced transparency. Our results pave the way for new applications in nuclear quantum optics involving more complex x-ray cavity designs.