Brightness-Scaling Potential of Actively Phase-Locked Solid-State Laser Arrays
Recent progress in developing phased arrays of high-brightness solid-state lasers is summarized. We address the prospects for continued brightness-scaling via a model that extrapolates measured results to large numbers of array elements and provides a quantitative illustration of the features of coh...
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Veröffentlicht in: | IEEE journal of selected topics in quantum electronics 2007-05, Vol.13 (3), p.460-472 |
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creator | Goodno, G.D. Asman, C.P. Anderegg, J. Brosnan, S. Cheung, E.C. Hammons, D. Injeyan, H. Komine, H. Long, W.H. McClellan, M. McNaught, S.J. Redmond, S. Simpson, R. Sollee, J. Weber, M. Weiss, S.B. Wickham, M. |
description | Recent progress in developing phased arrays of high-brightness solid-state lasers is summarized. We address the prospects for continued brightness-scaling via a model that extrapolates measured results to large numbers of array elements and provides a quantitative illustration of the features of coherent beam combination. This demonstrates that with present-day technology, both slab and fiber lasers have the capability to scale to unprecedented brightness levels. |
doi_str_mv | 10.1109/JSTQE.2007.896618 |
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We address the prospects for continued brightness-scaling via a model that extrapolates measured results to large numbers of array elements and provides a quantitative illustration of the features of coherent beam combination. 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We address the prospects for continued brightness-scaling via a model that extrapolates measured results to large numbers of array elements and provides a quantitative illustration of the features of coherent beam combination. This demonstrates that with present-day technology, both slab and fiber lasers have the capability to scale to unprecedented brightness levels.</description><subject>Arrays</subject><subject>Beams (radiation)</subject><subject>Coherence</subject><subject>Diodes</subject><subject>Extrapolation</subject><subject>Fiber lasers</subject><subject>Laser amplifiers</subject><subject>Laser arrays</subject><subject>laser beam</subject><subject>Laser beams</subject><subject>Laser noise</subject><subject>Optical arrays</subject><subject>Phased arrays</subject><subject>Power generation</subject><subject>Power lasers</subject><subject>Quantum electronics</subject><subject>Solid lasers</subject><subject>Solid state lasers</subject><subject>Space technology</subject><issn>1077-260X</issn><issn>1558-4542</issn><fulltext>true</fulltext><rsrctype>article</rsrctype><creationdate>2007</creationdate><recordtype>article</recordtype><sourceid>RIE</sourceid><recordid>eNqF0UtLw0AQB_AgCj4_gHgJHvSUOrPvHGupL4pWWsHbsiYTTU2TupsK_fZGKx486GmG4TcDwz-KDhF6iJCe3Uym98MeA9A9kyqFZiPaQSlNIqRgm10PWidMweN2tBvCDACMMLAT3Z778vmlrSmEZJK5qqyf43HTUt2WroqbIu5nbflO1Soev7hAyajJXimPJ01V5smkdS3Fo27u4773bhX2o63CVYEOvute9HAxnA6uktHd5fWgP0oyCdgmeW6c4qIALYxyjgt0TkmBkpQEQnjKnTTIipyjS5kWmdaE6okD08hlIfledLq-u_DN25JCa-dlyKiqXE3NMtgUuGIqFfxfaQwoqbnCTp78KbkQCJzpDh7_grNm6evuX5siQ2WMgg7hGmW-CcFTYRe-nDu_sgj2MzL7FZn9jMyuI-t2jtY7JRH9eMGEEEzyD0kzkAc</recordid><startdate>20070501</startdate><enddate>20070501</enddate><creator>Goodno, G.D.</creator><creator>Asman, C.P.</creator><creator>Anderegg, J.</creator><creator>Brosnan, S.</creator><creator>Cheung, E.C.</creator><creator>Hammons, D.</creator><creator>Injeyan, H.</creator><creator>Komine, H.</creator><creator>Long, W.H.</creator><creator>McClellan, M.</creator><creator>McNaught, S.J.</creator><creator>Redmond, S.</creator><creator>Simpson, R.</creator><creator>Sollee, J.</creator><creator>Weber, M.</creator><creator>Weiss, S.B.</creator><creator>Wickham, M.</creator><general>IEEE</general><general>The Institute of Electrical and Electronics Engineers, Inc. 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We address the prospects for continued brightness-scaling via a model that extrapolates measured results to large numbers of array elements and provides a quantitative illustration of the features of coherent beam combination. This demonstrates that with present-day technology, both slab and fiber lasers have the capability to scale to unprecedented brightness levels.</abstract><cop>New York</cop><pub>IEEE</pub><doi>10.1109/JSTQE.2007.896618</doi><tpages>13</tpages></addata></record> |
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subjects | Arrays Beams (radiation) Coherence Diodes Extrapolation Fiber lasers Laser amplifiers Laser arrays laser beam Laser beams Laser noise Optical arrays Phased arrays Power generation Power lasers Quantum electronics Solid lasers Solid state lasers Space technology |
title | Brightness-Scaling Potential of Actively Phase-Locked Solid-State Laser Arrays |
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