Fundamental Asymmetries between Spatial and Temporal Boundaries in Electromagnetics

Abstract

Time-varying materials bring an extra degree of design freedom compared to their conventional time-invariant counterparts. However, few discussions have focused on the underlying physical difference between spatial and temporal boundaries. In this letter, we thoroughly investigate those differences from the perspective of conservation laws. By doing so, the building blocks of optics and electromagnetics such as the reflection law, Snell’s law, and Fresnel’s equations can be analogously derived in a temporal context, but with completely different interpretations. Furthermore, we study the unique features of temporal boundaries, such as their nonconformance to energy conservation and causality.

Document Details

Document Type
Pub Defense Publication
Publication Date
Apr 04, 2023
Source ID
10.3390/sym15040858

Entities

People

  • Douglas H. Werner
  • Jingwei Xu
  • Wending Mai

Organizations

  • Pennsylvania State University

Tags

Fields of Study

  • Physics

Readers

  • Calculus or Mathematical Analysis
  • Computational Fluid Dynamics (CFD)
  • Wave Propagation and Nonlinear Chaotic Dynamics.