论文标题

光谱因果关系和波的散射

Spectral Causality and the Scattering of Waves

论文作者

Hayran, Zeki, Chen, Aobo, Monticone, Francesco

论文摘要

因果关系 - 指出系统的输出不能在输入之前暂时的原理 - 是自然的普遍特性。在这里,我们表明,通过利用时间调制的非热光子系统的特殊特性,可以在光谱域中实现类似输入的关系。具体而言,我们揭示了一系列复杂的时间调节的超材料的存在,这些超材料遵守了良好的频域kramers-kronig关系的时间域等效(因果关系的直接结果)。我们发现,在此类时间调节系统的散射响应中,输出频率在输入频率之前固有地禁止,因此我们将这些系统称为“光谱因果关系”。我们探讨了这种新引入的概念在几种相关应用中的后果,包括宽带完美的吸收,“事件”的时间掩盖以及沿合成维度的真正单向传播。通过模拟光谱领域中的因果关系概念,并提供了新的工具,以扩展时间调制的超材料(“计时 - 材料材料”)的领域,我们的发现可能打开未开发的机会并启用相关的技术进步,并在各个光元素领域以及波浪物理和机器的各个领域,更广泛地,更广泛的机器和工具设备。

Causality - the principle stating that the output of a system cannot temporally precede the input - is a universal property of nature. Here, we show that analogous input-output relations can also be realized in the spectral domain by leveraging the peculiar properties of time-modulated non-Hermitian photonic systems. Specifically, we uncover the existence of a broad class of complex time-modulated metamaterials which obey the time-domain equivalent of the well-established frequency-domain Kramers-Kronig relations (a direct consequence of causality). We find that, in the scattering response of such time-modulated systems, the output frequencies are inherently prohibited from spectrally preceding the input frequencies, hence we refer to these systems as 'spectrally causal'. We explore the consequences of this newly introduced concept for several relevant applications, including broadband perfect absorption, temporal cloaking of an 'event', and truly unidirectional propagation along a synthetic dimension. By emulating the concept of causality in the spectral domain and providing new tools to extend the field of temporally modulated metamaterials ("chrono-metamaterials") into the complex realm, our findings may open unexplored opportunities and enable relevant technological advances in various areas of photonics and, more broadly, of wave physics and engineering.

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