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Nonlinear Optics in Organic Polaritonic Cavities and Cavity Arrays.
Record Type:
Electronic resources : Monograph/item
Title/Author:
Nonlinear Optics in Organic Polaritonic Cavities and Cavity Arrays./
Author:
Schwab, Samuel Martin.
Description:
1 online resource (172 pages)
Notes:
Source: Dissertations Abstracts International, Volume: 84-01, Section: B.
Contained By:
Dissertations Abstracts International84-01B.
Subject:
Optics. -
Online resource:
http://pqdd.sinica.edu.tw/twdaoapp/servlet/advanced?query=29282214click for full text (PQDT)
ISBN:
9798802751800
Nonlinear Optics in Organic Polaritonic Cavities and Cavity Arrays.
Schwab, Samuel Martin.
Nonlinear Optics in Organic Polaritonic Cavities and Cavity Arrays.
- 1 online resource (172 pages)
Source: Dissertations Abstracts International, Volume: 84-01, Section: B.
Thesis (Ph.D.)--Case Western Reserve University, 2022.
Includes bibliographical references
Polaritonic media have recently been shown to be an excellent material for nonlinear devices, and as test-beds for room temperature quantum phenomena and other fundamental physics. They are also exceptionally tunable and easy to construct. For nonlinear optics, the polaritonic resonance has been shown experimentally to dominate the expected output spectra and enhance the nonlinear processes. This requires a fundamental shift in predicting the nonlinear response of a system as more than a simple sum of its parts. This profound realization has culminated in many interesting scientific works, is evaluated in detail in this thesis, and plays a large role in the future of developing polaritonic devices for nonlinear optical devices. Beyond this, as light-matter entangled states, polaritons may also play a role in bringing quantum mechanical systems and processes to room temperature. This thesis explores some of the experimental evidence surrounding the nonlinear response of polaritons and their explication via quantum mechanics. We accomplish this primarily using the experimental techniques of z-scan and develop perturbation theory for a theoretical description of the nonlinear response. Additionally this thesis presents the application of machine learning (ML) to attribution of artistic works through their topography and the associated analysis of those ML algorithms at various length scales. The work contained in this thesis provides important stepping stones for future innovation and research in the areas of nonlinear optics of polaritons and the nexus of ML and art.
Electronic reproduction.
Ann Arbor, Mich. :
ProQuest,
2023
Mode of access: World Wide Web
ISBN: 9798802751800Subjects--Topical Terms:
517925
Optics.
Subjects--Index Terms:
Nonlinear opticsIndex Terms--Genre/Form:
542853
Electronic books.
Nonlinear Optics in Organic Polaritonic Cavities and Cavity Arrays.
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Polaritonic media have recently been shown to be an excellent material for nonlinear devices, and as test-beds for room temperature quantum phenomena and other fundamental physics. They are also exceptionally tunable and easy to construct. For nonlinear optics, the polaritonic resonance has been shown experimentally to dominate the expected output spectra and enhance the nonlinear processes. This requires a fundamental shift in predicting the nonlinear response of a system as more than a simple sum of its parts. This profound realization has culminated in many interesting scientific works, is evaluated in detail in this thesis, and plays a large role in the future of developing polaritonic devices for nonlinear optical devices. Beyond this, as light-matter entangled states, polaritons may also play a role in bringing quantum mechanical systems and processes to room temperature. This thesis explores some of the experimental evidence surrounding the nonlinear response of polaritons and their explication via quantum mechanics. We accomplish this primarily using the experimental techniques of z-scan and develop perturbation theory for a theoretical description of the nonlinear response. Additionally this thesis presents the application of machine learning (ML) to attribution of artistic works through their topography and the associated analysis of those ML algorithms at various length scales. The work contained in this thesis provides important stepping stones for future innovation and research in the areas of nonlinear optics of polaritons and the nexus of ML and art.
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click for full text (PQDT)
based on 0 review(s)
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