Direct amplification of picosecond pulses in F{sub 2}{sup -} : LiF crystals
An amplifier of picosecond pulses with an output power up to 10{sup 10} W and an energy up to 30 mJ at 1180 nm is developed on the basis of F{sub 2}{sup -} : LiF colour-center crystals. A 3-5-ps, 0.03-mJ probe pulse at 1.18{mu}m was obtained upon intracavity SRS conversion in a passively mode-locked...
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creator | Basiev, Tasoltan T Garnov, Sergei V Vovchenko, V I Karasik, Aleksandr Ya Klimentov, Sergei M Konyushkin, V A Kravtsov, S B Malyutin, A A Papashvili, A G Pivovarov, Pavel A Chunaev, D S |
description | An amplifier of picosecond pulses with an output power up to 10{sup 10} W and an energy up to 30 mJ at 1180 nm is developed on the basis of F{sub 2}{sup -} : LiF colour-center crystals. A 3-5-ps, 0.03-mJ probe pulse at 1.18{mu}m was obtained upon intracavity SRS conversion in a passively mode-locked Nd{sup 3+} : KGd(WO{sub 4}){sub 2} laser. The F{sub 2}{sup -} : LiF crystals were pumped by 1053-nm nanosecond pulses from a Nd : YLF laser, amplified in a GLS-22 phosphate glass to an energy of 5 J. The probe SRS pulses were amplified in a four-crystal two-cascade amplifier based on F{sub 2}{sup -} : LiF crystals with the total length of the active medium of 360 mm, by using counterpropagating pump beams. The dependences of the output radiation energy on the pump and input signal energies are measured. (special issue devoted to the 90th anniversary of a.m. prokhorov) |
doi_str_mv | 10.1070/QE2006V036N07ABEH013171 |
format | Article |
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A 3-5-ps, 0.03-mJ probe pulse at 1.18{mu}m was obtained upon intracavity SRS conversion in a passively mode-locked Nd{sup 3+} : KGd(WO{sub 4}){sub 2} laser. The F{sub 2}{sup -} : LiF crystals were pumped by 1053-nm nanosecond pulses from a Nd : YLF laser, amplified in a GLS-22 phosphate glass to an energy of 5 J. The probe SRS pulses were amplified in a four-crystal two-cascade amplifier based on F{sub 2}{sup -} : LiF crystals with the total length of the active medium of 360 mm, by using counterpropagating pump beams. The dependences of the output radiation energy on the pump and input signal energies are measured. 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A 3-5-ps, 0.03-mJ probe pulse at 1.18{mu}m was obtained upon intracavity SRS conversion in a passively mode-locked Nd{sup 3+} : KGd(WO{sub 4}){sub 2} laser. The F{sub 2}{sup -} : LiF crystals were pumped by 1053-nm nanosecond pulses from a Nd : YLF laser, amplified in a GLS-22 phosphate glass to an energy of 5 J. The probe SRS pulses were amplified in a four-crystal two-cascade amplifier based on F{sub 2}{sup -} : LiF crystals with the total length of the active medium of 360 mm, by using counterpropagating pump beams. The dependences of the output radiation energy on the pump and input signal energies are measured. (special issue devoted to the 90th anniversary of a.m. prokhorov)</description><subject>ALKALI METAL COMPOUNDS</subject><subject>AMPLIFIERS</subject><subject>BEAMS</subject><subject>CHARGED PARTICLES</subject><subject>COLOR CENTERS</subject><subject>CONDENSED MATTER PHYSICS, SUPERCONDUCTIVITY AND SUPERFLUIDITY</subject><subject>CRYSTAL DEFECTS</subject><subject>CRYSTAL STRUCTURE</subject><subject>CRYSTALS</subject><subject>ELECTRONIC EQUIPMENT</subject><subject>EMISSION</subject><subject>ENERGY-LEVEL TRANSITIONS</subject><subject>FLUORIDES</subject><subject>FLUORINE COMPOUNDS</subject><subject>GADOLINIUM COMPOUNDS</subject><subject>GADOLINIUM TUNGSTATES</subject><subject>HALIDES</subject><subject>HALOGEN COMPOUNDS</subject><subject>IONS</subject><subject>LASERS</subject><subject>LITHIUM COMPOUNDS</subject><subject>LITHIUM FLUORIDES</subject><subject>LITHIUM HALIDES</subject><subject>NEODYMIUM IONS</subject><subject>OPTICAL PUMPING</subject><subject>OXYGEN COMPOUNDS</subject><subject>PHOTON BEAMS</subject><subject>POINT DEFECTS</subject><subject>POTASSIUM COMPOUNDS</subject><subject>POTASSIUM TUNGSTATES</subject><subject>PROBES</subject><subject>PULSES</subject><subject>PUMPING</subject><subject>RAMAN EFFECT</subject><subject>RARE EARTH COMPOUNDS</subject><subject>REFRACTORY METAL COMPOUNDS</subject><subject>SIGNALS</subject><subject>STIMULATED EMISSION</subject><subject>TRANSITION ELEMENT COMPOUNDS</subject><subject>TUNGSTATES</subject><subject>TUNGSTEN COMPOUNDS</subject><subject>VACANCIES</subject><issn>1063-7818</issn><fulltext>true</fulltext><rsrctype>article</rsrctype><creationdate>2006</creationdate><recordtype>article</recordtype><recordid>eNqNzcFqwkAQxvE9WKi2fQYHPKedycbd4E1rgqAUCqVXSdcNjsRsyKyHIr57c-gDePpd_nyfUlPCV0KLb59Fimi-UZsPtMtVsUHSZGmkxoRGJzan_FFNRE6IaMnosdquufcuQnXuGq7ZVZFDC6GGjl0Q70J7gO7SiBfgFsqrXH4gvQ10kNxgATsuwfW_EqtGntVDPeBf_n1Ss7L4et8kQSLvxXH07jgstsPhPqXMmHmW6fuqPxyDQ0A</recordid><startdate>20060731</startdate><enddate>20060731</enddate><creator>Basiev, Tasoltan T</creator><creator>Garnov, Sergei V</creator><creator>Vovchenko, V I</creator><creator>Karasik, Aleksandr Ya</creator><creator>Klimentov, Sergei M</creator><creator>Konyushkin, V A</creator><creator>Kravtsov, S B</creator><creator>Malyutin, A A</creator><creator>Papashvili, A G</creator><creator>Pivovarov, Pavel A</creator><creator>Chunaev, D S</creator><scope>OTOTI</scope></search><sort><creationdate>20060731</creationdate><title>Direct amplification of picosecond pulses in F{sub 2}{sup -} : LiF crystals</title><author>Basiev, Tasoltan T ; Garnov, Sergei V ; Vovchenko, V I ; Karasik, Aleksandr Ya ; Klimentov, Sergei M ; Konyushkin, V A ; Kravtsov, S B ; Malyutin, A A ; Papashvili, A G ; Pivovarov, Pavel A ; Chunaev, D S</author></sort><facets><frbrtype>5</frbrtype><frbrgroupid>cdi_FETCH-osti_scitechconnect_214665443</frbrgroupid><rsrctype>articles</rsrctype><prefilter>articles</prefilter><language>eng</language><creationdate>2006</creationdate><topic>ALKALI METAL COMPOUNDS</topic><topic>AMPLIFIERS</topic><topic>BEAMS</topic><topic>CHARGED PARTICLES</topic><topic>COLOR CENTERS</topic><topic>CONDENSED MATTER PHYSICS, SUPERCONDUCTIVITY AND SUPERFLUIDITY</topic><topic>CRYSTAL DEFECTS</topic><topic>CRYSTAL STRUCTURE</topic><topic>CRYSTALS</topic><topic>ELECTRONIC EQUIPMENT</topic><topic>EMISSION</topic><topic>ENERGY-LEVEL TRANSITIONS</topic><topic>FLUORIDES</topic><topic>FLUORINE COMPOUNDS</topic><topic>GADOLINIUM COMPOUNDS</topic><topic>GADOLINIUM TUNGSTATES</topic><topic>HALIDES</topic><topic>HALOGEN COMPOUNDS</topic><topic>IONS</topic><topic>LASERS</topic><topic>LITHIUM COMPOUNDS</topic><topic>LITHIUM FLUORIDES</topic><topic>LITHIUM HALIDES</topic><topic>NEODYMIUM IONS</topic><topic>OPTICAL PUMPING</topic><topic>OXYGEN COMPOUNDS</topic><topic>PHOTON BEAMS</topic><topic>POINT DEFECTS</topic><topic>POTASSIUM COMPOUNDS</topic><topic>POTASSIUM TUNGSTATES</topic><topic>PROBES</topic><topic>PULSES</topic><topic>PUMPING</topic><topic>RAMAN EFFECT</topic><topic>RARE EARTH COMPOUNDS</topic><topic>REFRACTORY METAL COMPOUNDS</topic><topic>SIGNALS</topic><topic>STIMULATED EMISSION</topic><topic>TRANSITION ELEMENT COMPOUNDS</topic><topic>TUNGSTATES</topic><topic>TUNGSTEN COMPOUNDS</topic><topic>VACANCIES</topic><toplevel>peer_reviewed</toplevel><toplevel>online_resources</toplevel><creatorcontrib>Basiev, Tasoltan T</creatorcontrib><creatorcontrib>Garnov, Sergei V</creatorcontrib><creatorcontrib>Vovchenko, V I</creatorcontrib><creatorcontrib>Karasik, Aleksandr Ya</creatorcontrib><creatorcontrib>Klimentov, Sergei M</creatorcontrib><creatorcontrib>Konyushkin, V A</creatorcontrib><creatorcontrib>Kravtsov, S B</creatorcontrib><creatorcontrib>Malyutin, A A</creatorcontrib><creatorcontrib>Papashvili, A G</creatorcontrib><creatorcontrib>Pivovarov, Pavel A</creatorcontrib><creatorcontrib>Chunaev, D S</creatorcontrib><collection>OSTI.GOV</collection><jtitle>Quantum electronics (Woodbury, N.Y.)</jtitle></facets><delivery><delcategory>Remote Search Resource</delcategory><fulltext>fulltext</fulltext></delivery><addata><au>Basiev, Tasoltan T</au><au>Garnov, Sergei V</au><au>Vovchenko, V I</au><au>Karasik, Aleksandr Ya</au><au>Klimentov, Sergei M</au><au>Konyushkin, V A</au><au>Kravtsov, S B</au><au>Malyutin, A A</au><au>Papashvili, A G</au><au>Pivovarov, Pavel A</au><au>Chunaev, D S</au><format>journal</format><genre>article</genre><ristype>JOUR</ristype><atitle>Direct amplification of picosecond pulses in F{sub 2}{sup -} : LiF crystals</atitle><jtitle>Quantum electronics (Woodbury, N.Y.)</jtitle><date>2006-07-31</date><risdate>2006</risdate><volume>36</volume><issue>7</issue><issn>1063-7818</issn><abstract>An amplifier of picosecond pulses with an output power up to 10{sup 10} W and an energy up to 30 mJ at 1180 nm is developed on the basis of F{sub 2}{sup -} : LiF colour-center crystals. A 3-5-ps, 0.03-mJ probe pulse at 1.18{mu}m was obtained upon intracavity SRS conversion in a passively mode-locked Nd{sup 3+} : KGd(WO{sub 4}){sub 2} laser. The F{sub 2}{sup -} : LiF crystals were pumped by 1053-nm nanosecond pulses from a Nd : YLF laser, amplified in a GLS-22 phosphate glass to an energy of 5 J. The probe SRS pulses were amplified in a four-crystal two-cascade amplifier based on F{sub 2}{sup -} : LiF crystals with the total length of the active medium of 360 mm, by using counterpropagating pump beams. The dependences of the output radiation energy on the pump and input signal energies are measured. (special issue devoted to the 90th anniversary of a.m. prokhorov)</abstract><cop>United States</cop><doi>10.1070/QE2006V036N07ABEH013171</doi></addata></record> |
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subjects | ALKALI METAL COMPOUNDS AMPLIFIERS BEAMS CHARGED PARTICLES COLOR CENTERS CONDENSED MATTER PHYSICS, SUPERCONDUCTIVITY AND SUPERFLUIDITY CRYSTAL DEFECTS CRYSTAL STRUCTURE CRYSTALS ELECTRONIC EQUIPMENT EMISSION ENERGY-LEVEL TRANSITIONS FLUORIDES FLUORINE COMPOUNDS GADOLINIUM COMPOUNDS GADOLINIUM TUNGSTATES HALIDES HALOGEN COMPOUNDS IONS LASERS LITHIUM COMPOUNDS LITHIUM FLUORIDES LITHIUM HALIDES NEODYMIUM IONS OPTICAL PUMPING OXYGEN COMPOUNDS PHOTON BEAMS POINT DEFECTS POTASSIUM COMPOUNDS POTASSIUM TUNGSTATES PROBES PULSES PUMPING RAMAN EFFECT RARE EARTH COMPOUNDS REFRACTORY METAL COMPOUNDS SIGNALS STIMULATED EMISSION TRANSITION ELEMENT COMPOUNDS TUNGSTATES TUNGSTEN COMPOUNDS VACANCIES |
title | Direct amplification of picosecond pulses in F{sub 2}{sup -} : LiF crystals |
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