Unidirectional scattering with spatial homogeneity using photonic time disorder

Fuente: arXiv
Saved in:
Bibliographic Details
Main Authors: Kim, Jungmin, Lee, Dayeong, Yu, Sunkyu, Park, Namkyoo
Format: Preprint
Published: 2022
Subjects:
Online Access:
Tags: Add Tag
No Tags, Be the first to tag this record!
_version_ 1866914746721107968
author Kim, Jungmin
Lee, Dayeong
Yu, Sunkyu
Park, Namkyoo
author_facet Kim, Jungmin
Lee, Dayeong
Yu, Sunkyu
Park, Namkyoo
contents The temporal degree of freedom in photonics has been a recent research hotspot due to its analogy with spatial axes, causality, and open-system characteristics. In particular, the temporal analogues of photonic crystals have stimulated the design of momentum gaps and their extension to topological and non-Hermitian photonics. Although recent studies have also revealed the effect of broken discrete time-translational symmetry in view of the temporal analogy of spatial Anderson localization, the broad intermediate regime between time order and time uncorrelated disorder has not been examined. Here we investigate the inverse design of photonic time disorder to achieve optical functionalities in spatially homogeneous platforms. By developing the structure factor and order metric using causal Green's functions for the domain of time disorder, we demonstrate engineered time scatterer, which provides unidirectional scattering with controlled scattering amplitudes. We also reveal that the order-to-disorder transition in the time domain allows for the manipulation of scattering bandwidths, which inspires resonance-free temporal colour filtering. Our work will pave the way for advancing optical functionalities without spatial patterning.
format Preprint
id arxiv_https___arxiv_org_abs_2208_11884
institution arXiv
publishDate 2022
record_format arxiv
spellingShingle Unidirectional scattering with spatial homogeneity using photonic time disorder
Kim, Jungmin
Lee, Dayeong
Yu, Sunkyu
Park, Namkyoo
Optics
The temporal degree of freedom in photonics has been a recent research hotspot due to its analogy with spatial axes, causality, and open-system characteristics. In particular, the temporal analogues of photonic crystals have stimulated the design of momentum gaps and their extension to topological and non-Hermitian photonics. Although recent studies have also revealed the effect of broken discrete time-translational symmetry in view of the temporal analogy of spatial Anderson localization, the broad intermediate regime between time order and time uncorrelated disorder has not been examined. Here we investigate the inverse design of photonic time disorder to achieve optical functionalities in spatially homogeneous platforms. By developing the structure factor and order metric using causal Green's functions for the domain of time disorder, we demonstrate engineered time scatterer, which provides unidirectional scattering with controlled scattering amplitudes. We also reveal that the order-to-disorder transition in the time domain allows for the manipulation of scattering bandwidths, which inspires resonance-free temporal colour filtering. Our work will pave the way for advancing optical functionalities without spatial patterning.
title Unidirectional scattering with spatial homogeneity using photonic time disorder
topic Optics
url https://arxiv.org/abs/2208.11884