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  1. Thesis
  2. Year of 2024

Design, Fabrication, and Characterization of Optical Nanofiber Cavities

https://doi.org/10.15102/0002000458
https://doi.org/10.15102/0002000458
d64d56f7-20b4-4f4b-b962-15b746905673
Name / File License Actions
MaedaMakiFulltext.pdf MaedaMakiFulltext.pdf (22.2 MB)
MaedaMakiExamAbstract.pdf MaedaMakiExamAbstract.pdf (48 KB)
Item type 学位論文 / Thesis or Dissertation(1)
PubDate 2024-04-16
Title
Title 共振器量子電気力学のための光ナノファイバーベース共振器の開発
Language ja
Title
Title Design, Fabrication, and Characterization of Optical Nanofiber Cavities
Language en
Language
Language eng
Resource Type
Resource Type Identifier http://purl.org/coar/resource_type/c_db06
Resource Type doctoral thesis
Identifier Registration
Identifier Registration 10.15102/0002000458
Identifier Registration Type JaLC
Access Right
Access Rights open access
Access Rights URI http://purl.org/coar/access_right/c_abf2
Author 前田 真貴

× 前田 真貴

ja 前田 真貴

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Author Maeda, Maki

× Maeda, Maki

en Maeda, Maki

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Abstract
Description Type Abstract
Description Optical nanofibers (ONFs) pave the way for researchers to understand and control light-matter interactions at the nanoscale. Evanescent light fields at the waist of ONFs can be coupled to quantum emitters for various studies. In particular, significant experimental progress on quantum emitter coupling with an ONF-based cavity mode, for cavity quantum electrodynamics (cQED), has been achieved in the last two decades. This thesis showcases the following topics: (i) the development of novel ONF cavity fabrication methods using a focused ion beam (FIB) which provides highly reflective cavity mirrors with more stable fabrication quality than conventional fabrication methods, (ii) the optical characterization of ONF cavities fabricated using the FIB technique, (iii) the investigation of the effects of laser annealing on the cavity modes, and (iv) the realization and characterization of an ONF-based cavity supporting higher-order modes (HOMs) and controlled excitation of the desired HOMs with polarization topology. This is a significant step toward degenerate multimode cQED and potential access to evanescent field singular optics using a HOM-ONF. This PhD work advances ONF-based cavity systems, not only for cQED studies but also contributes to their fundamental understanding in quantum optics, structured light, and beyond.
Language en
Exam Date
2024-01-25
Degree Conferral Date
Date Granted 2024-03-31
Degree
Degree Name Doctor of Philosophy
Degree Referral Number
Dissertation Number 甲第144号
Degree Conferrral Institution
Degree Grantor Name Identifier Scheme kakenhi
Degree Grantor Name Identifier 38005
Degree Grantor Name Okinawa Institute of Science and Technology Graduate University
Version Format
Version Type VoR
Version Type Resource http://purl.org/coar/version/c_970fb48d4fbd8a85
Copyright Information
Rights © 2024 The Author.
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