Prudêncio Filipa R, Silveirinha Mário G
University of Lisbon - Instituto Superior Técnico and Instituto de Telecomunicações, Avenida Rovisco Pais 1, 1049-001 Lisbon, Portugal.
Instituto Universitário de Lisboa (ISCTE-IUL), Avenida das Forças Armadas 376, 1600-077 Lisbon, Portugal.
Nanophotonics. 2023 May 22;12(14):3007-3017. doi: 10.1515/nanoph-2023-0144. eCollection 2023 Jul.
Here, we show that isorefractive spacetime crystals with a travelling-wave modulation may mimic rigorously the response of moving material systems. Unlike generic spacetime crystals, which are characterized by a bi-anisotropic coupling in the co-moving frame, isorefractive crystals exhibit an observer-independent response, resulting in isotropic constitutive relations devoid of any bianisotropy. We show how to take advantage of this property in the calculation of the band diagrams of isorefractive spacetime crystals in the laboratory frame and in the study of the synthetic Fresnel drag. Furthermore, we discuss the impact of considering either a Galilean or a Lorentz transformation in the homogenization of spacetime crystals, showing that the effective response is independent of the considered transformation.
在此,我们表明具有行波调制的等折射时空晶体可以严格模拟运动材料系统的响应。与一般的时空晶体不同,一般时空晶体在共动参考系中具有双各向异性耦合,而等折射晶体表现出与观察者无关的响应,从而产生没有任何双各向异性的各向同性本构关系。我们展示了如何在实验室参考系中计算等折射时空晶体的能带图以及在研究合成菲涅耳拖曳时利用这一特性。此外,我们讨论了在时空晶体均匀化过程中考虑伽利略变换或洛伦兹变换的影响,表明有效响应与所考虑的变换无关。