Cornell University
Library
Cornell UniversityLibrary

eCommons

Help
Log In(current)
  1. Home
  2. College of Engineering
  3. Applied and Engineering Physics
  4. AEP - Monographs, Research and Papers
  5. Data from: Hermitian Nonlinear Wave Mixing Controlled by a PT-Symmetric Phase Transition

Data from: Hermitian Nonlinear Wave Mixing Controlled by a PT-Symmetric Phase Transition

File(s)
FlemensMoses_PRL2022_readme.txt (4.58 KB)
FlemensMoses_PRL2022_Figure2.zip (95.7 MB)
FlemensMoses_PRL2022_Figure3.zip (5.79 MB)
FlemensMoses_PRL2022_Figure4.zip (1.61 GB)
FlemensMoses_PRL_20220913_ExcelArchive.zip (588.98 MB)
Permanent Link(s)
https://doi.org/10.7298/dra3-6774
https://hdl.handle.net/1813/113115
Collections
AEP - Monographs, Research and Papers
Author
Flemens, Noah
Moses, Jeffrey
Abstract

These files contain data supporting all results reported in N. Flemens, et al., Hermitian Nonlinear Wave Mixing Controlled by a PT-Symmetric Phase Transition. In N. Flemens, et al. we found: While non-Hermitian systems are normally constructed through incoherent coupling to a larger environment, recent works have shown that under certain conditions coherent couplings can be used to similar effect. We show that this new paradigm enables the behavior associated with the PT-symmetric phase of a non-Hermitian subsystem to control the containing Hermitian system through the coherent couplings. This is achieved in parametric nonlinear wave mixing where simultaneous second harmonic generation replaces the role of loss to induce non-Hermitian behavior that persists through a full exchange of power within the Hermitian system. These findings suggest a new approach for the engineering of dynamics where energy recovery and sustainability are of importance that could be of significance for photonics and laser science.

Sponsorship
This work was supported initially by the Cornell Center for Materials Research with funding from the NSF MRSEC program (DMR-1719875), and later by the NSF under grant no. ECCS-1944653.
Date Issued
2023-04-27
Keywords
nonlinear optical frequency conversion
•
PT-symmetry breaking
•
exceptional points
•
nonlinear power exchange
•
effective loss
Related Publication(s)
Flemens, Noah and Jeffrey Moses (2022) Hermitian Nonlinear Wave Mixing
Controlled by a PT-Symmetric Phase Transition. Phys. Rev. Lett. 129, 153901. https://doi.org/10.1103/PhysRevLett.129.153901
Link(s) to Related Publication(s)
https://doi.org/10.1103/PhysRevLett.129.153901
https://doi.org/10.48550/arXiv.2205.02922
Rights
Attribution 4.0 International
Rights URI
http://creativecommons.org/licenses/by/4.0/
Type
dataset
Accessibility Hazard
none

Site Statistics | Help

About eCommons | Policies | Terms of use | Contact Us

copyright © 2002-2026 Cornell University Library | Privacy | Web Accessibility Assistance