Understanding the temperature conditions for controlled splicing between silica and fluoride fibers

Fuente: arXiv
Saved in:
Bibliographic Details
Main Authors: Theodosiou, Antreas, Henderson-Sapir, Ori, Baravets, Yauhen, Cobcroft, Oliver T., Sentschuk, Samuel M., Stone, Jack A., Ottaway, David J., Peterka, Pavel
Format: Preprint
Published: 2024
Subjects:
Online Access:
Tags: Add Tag
No Tags, Be the first to tag this record!
_version_ 1866917936067772416
author Theodosiou, Antreas
Henderson-Sapir, Ori
Baravets, Yauhen
Cobcroft, Oliver T.
Sentschuk, Samuel M.
Stone, Jack A.
Ottaway, David J.
Peterka, Pavel
author_facet Theodosiou, Antreas
Henderson-Sapir, Ori
Baravets, Yauhen
Cobcroft, Oliver T.
Sentschuk, Samuel M.
Stone, Jack A.
Ottaway, David J.
Peterka, Pavel
contents This study explores the efficacy of thermal splicing conditions between silica and zirconium-fluoride fibers, focusing on achieving mechanical strength between the two fibers. A comprehensive characterization of the thermal profile in the hot zone of the filament splicer was conducted using a fiber Bragg grating, providing valuable insights into its stability and overall performance. Results demonstrate mechanically strong joints and suggest a very narrow temperature window to achieve strong connection between the two materials. Moreover, we characterize the surface composition of the ZrF4 fiber using energy dispersive spectroscopy following splicing at ideal temperatures, as well as at higher and lower temperatures. This work paves the way towards future implementation of silica and fluoride fibers splicing using alternative splicing solutions such as CO2 laser system while raising interesting facts for further studies in the specific field.
format Preprint
id arxiv_https___arxiv_org_abs_2407_12811
institution arXiv
publishDate 2024
record_format arxiv
spellingShingle Understanding the temperature conditions for controlled splicing between silica and fluoride fibers
Theodosiou, Antreas
Henderson-Sapir, Ori
Baravets, Yauhen
Cobcroft, Oliver T.
Sentschuk, Samuel M.
Stone, Jack A.
Ottaway, David J.
Peterka, Pavel
Optics
This study explores the efficacy of thermal splicing conditions between silica and zirconium-fluoride fibers, focusing on achieving mechanical strength between the two fibers. A comprehensive characterization of the thermal profile in the hot zone of the filament splicer was conducted using a fiber Bragg grating, providing valuable insights into its stability and overall performance. Results demonstrate mechanically strong joints and suggest a very narrow temperature window to achieve strong connection between the two materials. Moreover, we characterize the surface composition of the ZrF4 fiber using energy dispersive spectroscopy following splicing at ideal temperatures, as well as at higher and lower temperatures. This work paves the way towards future implementation of silica and fluoride fibers splicing using alternative splicing solutions such as CO2 laser system while raising interesting facts for further studies in the specific field.
title Understanding the temperature conditions for controlled splicing between silica and fluoride fibers
topic Optics
url https://arxiv.org/abs/2407.12811