Marino Francesco, Giacomelli Giovanni
CNR - Istituto Nazionale di Ottica, largo E. Fermi 6, I-50125 Firenze, Italy.
CNR - Istituto dei Sistemi Complessi, via Madonna del Piano 10, I-50019 Sesto Fiorentino, Italy.
Phys Rev E. 2020 Nov;102(5-1):052217. doi: 10.1103/PhysRevE.102.052217.
Dynamical systems with long-delay feedback can exhibit complicated temporal phenomena, which once reorganized in a two-dimensional space are reminiscent of spatiotemporal behavior. In this framework, a normal forms description has been developed to reproduce the dynamics, and the opportunity to treat the corresponding variables as true space and time has since been established. However, recently, an alternative approach has been proposed [F. Marino and G. Giacomelli, Phys. Rev. E 98, 060201(R) (2018)2470-004510.1103/PhysRevE.98.060201] with a different interpretation of the variables involved, which better takes into account their physical character and allows for an easier determination of the normal forms. In this paper, we extend such idea and apply it to a number of paradigmatic examples, paving the way to a rethinking of the concept of spatiotemporal representation of long-delayed systems.
具有长延迟反馈的动力系统可以展现出复杂的时间现象,这些现象一旦在二维空间中重新组织,就会让人联想到时空行为。在此框架下,已开发出一种范式描述来重现动力学,并且此后建立了将相应变量视为真实空间和时间的机会。然而,最近有人提出了一种替代方法[F. 马里诺和G. 贾科梅利,《物理评论E》98, 060201(R) (2018)2470 - 004510.1103/PhysRevE.98.060201],对所涉及的变量有不同的解释,这种解释能更好地考虑它们的物理特性,并便于确定范式。在本文中,我们扩展了这一思想并将其应用于一些典型例子,为重新思考长延迟系统的时空表示概念铺平了道路。