Machine learning for knowledge acquisition and accelerated inverse-design for non-Hermitian systems

04/28/2022
by   W. W. Ahmed, et al.
0

Non-Hermitian systems offer new platforms for unusual physical properties that can be flexibly manipulated by redistribution of the real and imaginary parts of refractive indices, whose presence breaks conventional wave propagation symmetries, leading to asymmetric reflection and symmetric transmission with respect to the wave propagation direction. Here, we use supervised and unsupervised learning techniques for knowledge acquisition in non-Hermitian systems which accelerate the inverse design process. In particular, we construct a deep learning model that relates the transmission and asymmetric reflection in non-conservative settings and proposes sub-manifold learning to recognize non-Hermitian features from transmission spectra. The developed deep learning framework determines the feasibility of a desired spectral response for a given structure and uncovers the role of effective gain-loss parameters to tailor the spectral response. These findings pave the way for intelligent inverse design and shape our understanding of the physical mechanism in general non-Hermitian systems.

READ FULL TEXT

page 1

page 2

page 3

page 4

research
11/07/2019

Accounting for Physics Uncertainty in Ultrasonic Wave Propagation using Deep Learning

Ultrasonic guided waves are commonly used to localize structural damage ...
research
02/02/2023

Machine Learning Extreme Acoustic Non-reciprocity in a Linear Waveguide with Multiple Nonlinear Asymmetric Gates

This work is a study of acoustic non-reciprocity exhibited by a passive ...
research
10/08/2021

Kinematically consistent recurrent neural networks for learning inverse problems in wave propagation

Although machine learning (ML) is increasingly employed recently for mec...
research
11/26/2019

Spectra2pix: Generating Nanostructure Images from Spectra

The design of the nanostructures that are used in the field of nano-phot...
research
11/11/2020

A Quantum-Inspired Probabilistic Model for the Inverse Design of Meta-Structures

In quantum mechanics, a norm squared wave function can be interpreted as...
research
06/30/2020

Terahertz Pulse Shaping Using Diffractive Legos

Recent advances in deep learning have been providing non-intuitive solut...

Please sign up or login with your details

Forgot password? Click here to reset