Synthesis of hybrid polymer and its application as distributed feedback laser

The hybrid inorganic-organic polymer was synthesized by sol-gel method from TMSPMA. Organic dye laser of DCM was added into hybrid polymer host matrices by means of solution method at room temperature. The distributed feedback (DFB) laser was fabricated from hybrid polymer-DCM film using Lloyd Mirro...

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Main Authors: Sahrul Hidayat, Fitrilawati, Bahtiar, A., Siregar, R.E.
Format: Article
Language:English
Published: Universiti Kebangsaan Malaysia 2013
Online Access:http://journalarticle.ukm.my/6088/
http://journalarticle.ukm.my/6088/1/14_Sahrul_Hidayat.pdf
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author Sahrul Hidayat,
Fitrilawati,
Bahtiar, A.
Siregar, R.E.
author_facet Sahrul Hidayat,
Fitrilawati,
Bahtiar, A.
Siregar, R.E.
author_sort Sahrul Hidayat,
building UKM Institutional Repository
collection Online Access
description The hybrid inorganic-organic polymer was synthesized by sol-gel method from TMSPMA. Organic dye laser of DCM was added into hybrid polymer host matrices by means of solution method at room temperature. The distributed feedback (DFB) laser was fabricated from hybrid polymer-DCM film using Lloyd Mirror interference technique. The surface profile of device was observed using AFM. From the AFM image, we obtained that the grating period was about 385 nm and the depth of corrugation was about 60 nm. The characteristics of DFB laser was investigated by optical pumping using SHG Nd-YAG (λ=532 nm). The laser emission has been demonstrated at 582 nm with the spectral width (FWHM) less than 2 nm at pumping power of 14.00 mJ/pulse cm2. The experimental results have been confirmed by the theoretical model using coupled mode theory. The confirmation of experimental works by the theoretical model has a good result.
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spelling oai:generic.eprints.org:60882016-12-14T06:40:20Z http://journalarticle.ukm.my/6088/ Synthesis of hybrid polymer and its application as distributed feedback laser Sahrul Hidayat, Fitrilawati, Bahtiar, A. Siregar, R.E. The hybrid inorganic-organic polymer was synthesized by sol-gel method from TMSPMA. Organic dye laser of DCM was added into hybrid polymer host matrices by means of solution method at room temperature. The distributed feedback (DFB) laser was fabricated from hybrid polymer-DCM film using Lloyd Mirror interference technique. The surface profile of device was observed using AFM. From the AFM image, we obtained that the grating period was about 385 nm and the depth of corrugation was about 60 nm. The characteristics of DFB laser was investigated by optical pumping using SHG Nd-YAG (λ=532 nm). The laser emission has been demonstrated at 582 nm with the spectral width (FWHM) less than 2 nm at pumping power of 14.00 mJ/pulse cm2. The experimental results have been confirmed by the theoretical model using coupled mode theory. The confirmation of experimental works by the theoretical model has a good result. Universiti Kebangsaan Malaysia 2013-04 Article PeerReviewed application/pdf en http://journalarticle.ukm.my/6088/1/14_Sahrul_Hidayat.pdf Sahrul Hidayat, and Fitrilawati, and Bahtiar, A. and Siregar, R.E. (2013) Synthesis of hybrid polymer and its application as distributed feedback laser. Sains Malaysiana, 42 (4). pp. 521-527. ISSN 0126-6039 http://www.ukm.my/jsm/
spellingShingle Sahrul Hidayat,
Fitrilawati,
Bahtiar, A.
Siregar, R.E.
Synthesis of hybrid polymer and its application as distributed feedback laser
title Synthesis of hybrid polymer and its application as distributed feedback laser
title_full Synthesis of hybrid polymer and its application as distributed feedback laser
title_fullStr Synthesis of hybrid polymer and its application as distributed feedback laser
title_full_unstemmed Synthesis of hybrid polymer and its application as distributed feedback laser
title_short Synthesis of hybrid polymer and its application as distributed feedback laser
title_sort synthesis of hybrid polymer and its application as distributed feedback laser
url http://journalarticle.ukm.my/6088/
http://journalarticle.ukm.my/6088/
http://journalarticle.ukm.my/6088/1/14_Sahrul_Hidayat.pdf