Single-crystal SrTiO3 fiber grown by laser heated pedestal growth method: influence of ceramic feed rod preparation in fiber quality
The rapidly spreading use of optical fiber as a transmission medium has created an interest in fiber-compatible optical devices and methods for growing them, such as the Laser Heated Pedestal Growth (LHPG). This paper reports on the influence of the ceramic feed rod treatment on fiber quality and optimization of ceramic pedestal processing that allows improvements to be made on the final quality in a simple manner. Using the LHPG technique, transparent crack-free colorless single crystal fibers of SrTiO3 (0.50 mm in diameter and 30-40 mm in length) were grown directly from green-body feed rods, without using external oxygen atmosphere.
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ABM, ABC, ABPol
1998
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oai:scielo:S1516-143919980001000042000-06-05Single-crystal SrTiO3 fiber grown by laser heated pedestal growth method: influence of ceramic feed rod preparation in fiber qualityReyes Ardila,D.Andreeta,M.R.B.Cuffini,S.L.Hernandes,A. C.Andreeta,J.P.Mascarenhas,Y.P. laser heated pedestal growth SrTiO3 crystal growth The rapidly spreading use of optical fiber as a transmission medium has created an interest in fiber-compatible optical devices and methods for growing them, such as the Laser Heated Pedestal Growth (LHPG). This paper reports on the influence of the ceramic feed rod treatment on fiber quality and optimization of ceramic pedestal processing that allows improvements to be made on the final quality in a simple manner. Using the LHPG technique, transparent crack-free colorless single crystal fibers of SrTiO3 (0.50 mm in diameter and 30-40 mm in length) were grown directly from green-body feed rods, without using external oxygen atmosphere.info:eu-repo/semantics/openAccessABM, ABC, ABPolMaterials Research v.1 n.1 19981998-10-01info:eu-repo/semantics/articletext/htmlhttp://old.scielo.br/scielo.php?script=sci_arttext&pid=S1516-14391998000100004en10.1590/S1516-14391998000100004 |
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Reyes Ardila,D. Andreeta,M.R.B. Cuffini,S.L. Hernandes,A. C. Andreeta,J.P. Mascarenhas,Y.P. |
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Reyes Ardila,D. Andreeta,M.R.B. Cuffini,S.L. Hernandes,A. C. Andreeta,J.P. Mascarenhas,Y.P. Single-crystal SrTiO3 fiber grown by laser heated pedestal growth method: influence of ceramic feed rod preparation in fiber quality |
author_facet |
Reyes Ardila,D. Andreeta,M.R.B. Cuffini,S.L. Hernandes,A. C. Andreeta,J.P. Mascarenhas,Y.P. |
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Reyes Ardila,D. |
title |
Single-crystal SrTiO3 fiber grown by laser heated pedestal growth method: influence of ceramic feed rod preparation in fiber quality |
title_short |
Single-crystal SrTiO3 fiber grown by laser heated pedestal growth method: influence of ceramic feed rod preparation in fiber quality |
title_full |
Single-crystal SrTiO3 fiber grown by laser heated pedestal growth method: influence of ceramic feed rod preparation in fiber quality |
title_fullStr |
Single-crystal SrTiO3 fiber grown by laser heated pedestal growth method: influence of ceramic feed rod preparation in fiber quality |
title_full_unstemmed |
Single-crystal SrTiO3 fiber grown by laser heated pedestal growth method: influence of ceramic feed rod preparation in fiber quality |
title_sort |
single-crystal srtio3 fiber grown by laser heated pedestal growth method: influence of ceramic feed rod preparation in fiber quality |
description |
The rapidly spreading use of optical fiber as a transmission medium has created an interest in fiber-compatible optical devices and methods for growing them, such as the Laser Heated Pedestal Growth (LHPG). This paper reports on the influence of the ceramic feed rod treatment on fiber quality and optimization of ceramic pedestal processing that allows improvements to be made on the final quality in a simple manner. Using the LHPG technique, transparent crack-free colorless single crystal fibers of SrTiO3 (0.50 mm in diameter and 30-40 mm in length) were grown directly from green-body feed rods, without using external oxygen atmosphere. |
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ABM, ABC, ABPol |
publishDate |
1998 |
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http://old.scielo.br/scielo.php?script=sci_arttext&pid=S1516-14391998000100004 |
work_keys_str_mv |
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