A singly resonant CW OPO using periodically poled KTiPO/sub 4
Summary form only given. Continuous-wave (CW) nonlinear frequency conversion using quasi-phasematched crystals has become a relatively mature technique for efficiently generating radiation over a broad range of wavelengths. With its high nonlinearity of d/sub eff/=9.5 pm/V and high damage threshold,...
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creator | Weise, D. Strossner, U. Peters, A. Mlynek, J. Schiller, S. Arie, A. Rosenmenn, G. |
description | Summary form only given. Continuous-wave (CW) nonlinear frequency conversion using quasi-phasematched crystals has become a relatively mature technique for efficiently generating radiation over a broad range of wavelengths. With its high nonlinearity of d/sub eff/=9.5 pm/V and high damage threshold, PPKTP is an interesting alternative to periodically poled LiNbO/sub 3/ and LiTaO/sub 3/ (PPLN, PPLT). One important advantage of this material is the absence of photorefractive effects which, for example, allows operation at room temperature. We used a PPKTP crystal fabricated at Tel Aviv University to build a CW pump resonant, singly resonant optical parametric oscillator (PR-SRO). It is pumped by a frequency-doubled Nd:YAG master oscillator power amplifier (MOPA) system generating 2.4 W of single-frequency diffraction limited light at 532 nn via single-pass second harmonic generation in PPLN. |
doi_str_mv | 10.1109/CLEOE.2000.909680 |
format | Conference Proceeding |
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Continuous-wave (CW) nonlinear frequency conversion using quasi-phasematched crystals has become a relatively mature technique for efficiently generating radiation over a broad range of wavelengths. With its high nonlinearity of d/sub eff/=9.5 pm/V and high damage threshold, PPKTP is an interesting alternative to periodically poled LiNbO/sub 3/ and LiTaO/sub 3/ (PPLN, PPLT). One important advantage of this material is the absence of photorefractive effects which, for example, allows operation at room temperature. We used a PPKTP crystal fabricated at Tel Aviv University to build a CW pump resonant, singly resonant optical parametric oscillator (PR-SRO). It is pumped by a frequency-doubled Nd:YAG master oscillator power amplifier (MOPA) system generating 2.4 W of single-frequency diffraction limited light at 532 nn via single-pass second harmonic generation in PPLN.</description><identifier>ISBN: 0780363191</identifier><identifier>ISBN: 9780780363199</identifier><identifier>DOI: 10.1109/CLEOE.2000.909680</identifier><language>eng</language><publisher>IEEE</publisher><subject>Crystalline materials ; Crystals ; Frequency conversion ; Optical harmonic generation ; Optical materials ; Oscillators ; Photorefractive effect ; Photorefractive materials ; Resonance ; Temperature</subject><ispartof>Conference Digest. 2000 Conference on Lasers and Electro-Optics Europe (Cat. 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No.00TH8505)</title><addtitle>CLEOE</addtitle><description>Summary form only given. Continuous-wave (CW) nonlinear frequency conversion using quasi-phasematched crystals has become a relatively mature technique for efficiently generating radiation over a broad range of wavelengths. With its high nonlinearity of d/sub eff/=9.5 pm/V and high damage threshold, PPKTP is an interesting alternative to periodically poled LiNbO/sub 3/ and LiTaO/sub 3/ (PPLN, PPLT). One important advantage of this material is the absence of photorefractive effects which, for example, allows operation at room temperature. We used a PPKTP crystal fabricated at Tel Aviv University to build a CW pump resonant, singly resonant optical parametric oscillator (PR-SRO). It is pumped by a frequency-doubled Nd:YAG master oscillator power amplifier (MOPA) system generating 2.4 W of single-frequency diffraction limited light at 532 nn via single-pass second harmonic generation in PPLN.</description><subject>Crystalline materials</subject><subject>Crystals</subject><subject>Frequency conversion</subject><subject>Optical harmonic generation</subject><subject>Optical materials</subject><subject>Oscillators</subject><subject>Photorefractive effect</subject><subject>Photorefractive materials</subject><subject>Resonance</subject><subject>Temperature</subject><isbn>0780363191</isbn><isbn>9780780363199</isbn><fulltext>true</fulltext><rsrctype>conference_proceeding</rsrctype><creationdate>2000</creationdate><recordtype>conference_proceeding</recordtype><sourceid>6IE</sourceid><sourceid>RIE</sourceid><recordid>eNpjYJA0NNAzNDSw1Hf2cfV31TMyMDDQszSwNLMwYGbgMjC3MDA2Mza0NORg4C0uzgJKGhhbmhqbmXMy2DoqFGfmpedUKhSlFufnJeaVKDiHK_gH-CuUgsQVClKLMvNTMpMTc4BKCvJzUlMUvEMyA_z1i0uTFEx4GFjTEnOKU3mhNDeDlJtriLOHbmZqamp8QVFmbmJRZTzEIcZ4JQEHGDXr</recordid><startdate>2000</startdate><enddate>2000</enddate><creator>Weise, D.</creator><creator>Strossner, U.</creator><creator>Peters, A.</creator><creator>Mlynek, J.</creator><creator>Schiller, S.</creator><creator>Arie, A.</creator><creator>Rosenmenn, G.</creator><general>IEEE</general><scope>6IE</scope><scope>6IL</scope><scope>CBEJK</scope><scope>RIE</scope><scope>RIL</scope></search><sort><creationdate>2000</creationdate><title>A singly resonant CW OPO using periodically poled KTiPO/sub 4</title><author>Weise, D. ; Strossner, U. ; Peters, A. ; Mlynek, J. ; Schiller, S. ; Arie, A. ; Rosenmenn, G.</author></sort><facets><frbrtype>5</frbrtype><frbrgroupid>cdi_FETCH-ieee_primary_9096803</frbrgroupid><rsrctype>conference_proceedings</rsrctype><prefilter>conference_proceedings</prefilter><language>eng</language><creationdate>2000</creationdate><topic>Crystalline materials</topic><topic>Crystals</topic><topic>Frequency conversion</topic><topic>Optical harmonic generation</topic><topic>Optical materials</topic><topic>Oscillators</topic><topic>Photorefractive effect</topic><topic>Photorefractive materials</topic><topic>Resonance</topic><topic>Temperature</topic><toplevel>online_resources</toplevel><creatorcontrib>Weise, D.</creatorcontrib><creatorcontrib>Strossner, U.</creatorcontrib><creatorcontrib>Peters, A.</creatorcontrib><creatorcontrib>Mlynek, J.</creatorcontrib><creatorcontrib>Schiller, S.</creatorcontrib><creatorcontrib>Arie, A.</creatorcontrib><creatorcontrib>Rosenmenn, G.</creatorcontrib><collection>IEEE Electronic Library (IEL) Conference Proceedings</collection><collection>IEEE Proceedings Order Plan All Online (POP All Online) 1998-present by volume</collection><collection>IEEE Xplore All Conference Proceedings</collection><collection>IEEE Electronic Library (IEL)</collection><collection>IEEE Proceedings Order Plans (POP All) 1998-Present</collection></facets><delivery><delcategory>Remote Search Resource</delcategory><fulltext>fulltext_linktorsrc</fulltext></delivery><addata><au>Weise, D.</au><au>Strossner, U.</au><au>Peters, A.</au><au>Mlynek, J.</au><au>Schiller, S.</au><au>Arie, A.</au><au>Rosenmenn, G.</au><format>book</format><genre>proceeding</genre><ristype>CONF</ristype><atitle>A singly resonant CW OPO using periodically poled KTiPO/sub 4</atitle><btitle>Conference Digest. 2000 Conference on Lasers and Electro-Optics Europe (Cat. No.00TH8505)</btitle><stitle>CLEOE</stitle><date>2000</date><risdate>2000</risdate><spage>1 pp.</spage><pages>1 pp.-</pages><isbn>0780363191</isbn><isbn>9780780363199</isbn><abstract>Summary form only given. Continuous-wave (CW) nonlinear frequency conversion using quasi-phasematched crystals has become a relatively mature technique for efficiently generating radiation over a broad range of wavelengths. With its high nonlinearity of d/sub eff/=9.5 pm/V and high damage threshold, PPKTP is an interesting alternative to periodically poled LiNbO/sub 3/ and LiTaO/sub 3/ (PPLN, PPLT). One important advantage of this material is the absence of photorefractive effects which, for example, allows operation at room temperature. We used a PPKTP crystal fabricated at Tel Aviv University to build a CW pump resonant, singly resonant optical parametric oscillator (PR-SRO). 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source | IEEE Electronic Library (IEL) Conference Proceedings |
subjects | Crystalline materials Crystals Frequency conversion Optical harmonic generation Optical materials Oscillators Photorefractive effect Photorefractive materials Resonance Temperature |
title | A singly resonant CW OPO using periodically poled KTiPO/sub 4 |
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