García-Meca Carlos, Ortiz Andrés Macho, Sáez Roberto Llorente
Nanophotonics Technology Centre, Universitat Politècnica de València, Valencia, 46022, Spain.
Nat Commun. 2020 Feb 10;11(1):813. doi: 10.1038/s41467-020-14634-0.
Supersymmetry is a conjectured symmetry between bosons and fermions aiming at solving fundamental questions in string and quantum field theory. Its subsequent application to quantum mechanics led to a ground-breaking analysis and design machinery, later fruitfully extrapolated to photonics. In all cases, the algebraic transformations of quantum-mechanical supersymmetry were conceived in the space realm. Here, we demonstrate that Maxwell's equations, as well as the acoustic and elastic wave equations, also possess an underlying supersymmetry in the time domain. We explore the consequences of this property in the field of optics, obtaining a simple analytic relation between the scattering coefficients of numerous time-varying systems, and uncovering a wide class of reflectionless, three dimensional, all-dielectric, isotropic, omnidirectional, polarisation-independent, non-complex media. Temporal supersymmetry is also shown to arise in dispersive media supporting temporal bound states, which allows engineering their momentum spectra and dispersive properties. These unprecedented features may enable the creation of novel reconfigurable devices, including invisible materials, frequency shifters, isolators, and pulse-shape transformers.
超对称是玻色子和费米子之间的一种推测性对称,旨在解决弦理论和量子场论中的基本问题。其随后在量子力学中的应用导致了一种开创性的分析和设计机制,后来成功地外推到了光子学领域。在所有情况下,量子力学超对称的代数变换都是在空间领域中构思出来的。在此,我们证明麦克斯韦方程组以及声学和弹性波方程在时域中也具有潜在的超对称性。我们探索了这一特性在光学领域的后果,得到了众多时变系统散射系数之间的一个简单解析关系,并揭示了一类广泛的无反射、三维、全介质、各向同性、全向、偏振无关、非复数介质。时间超对称也被证明出现在支持时间束缚态的色散介质中,这使得能够设计它们的动量谱和色散特性。这些前所未有的特性可能会促成新型可重构器件的创造,包括隐形材料、频率转换器、隔离器和脉冲形状变换器。