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Far field refraction problem with loss of energy in negative refractive index material

Haokun Sui, Feida Jiang

Abstract

This paper studies the far field refraction problem in negative refractive index material with loss of energy, which is a remaining problem in E. Stachura, Nonlinear Anal. 2017;157:76-103. The analysis is divided into two cases according to the relative refractive index $κ$, that is, $κ<-1$ and $-1<κ<0$. For each case, we use the Minkowski method to establish the existence of the weak solution when the target measure is either discrete or a finite Radon measure. Eventually, the inequality involving a Monge-Ampère type operator satisfied by the solution of the problem is derived, which is useful to understand this complex optical phenomenon.

Far field refraction problem with loss of energy in negative refractive index material

Abstract

This paper studies the far field refraction problem in negative refractive index material with loss of energy, which is a remaining problem in E. Stachura, Nonlinear Anal. 2017;157:76-103. The analysis is divided into two cases according to the relative refractive index , that is, and . For each case, we use the Minkowski method to establish the existence of the weak solution when the target measure is either discrete or a finite Radon measure. Eventually, the inequality involving a Monge-Ampère type operator satisfied by the solution of the problem is derived, which is useful to understand this complex optical phenomenon.
Paper Structure (21 sections, 201 equations, 4 figures)

This paper contains 21 sections, 201 equations, 4 figures.

Figures (4)

  • Figure 1: Sketch of the refraction problem with loss of energy in negative refractive index material.
  • Figure 2: Statement of the problem in $S^{2}$.
  • Figure 3: Hyperboloid refracting when $\kappa<-1$, where $O$ and $P$ are focus of hyperboloid.
  • Figure 4: Ellipsoid refracting when $-1<\kappa<0$, where $O$ and $P$ are focus of ellipsoid.

Theorems & Definitions (23)

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