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The Titan laser at LLNL

The Titan laser, designed to produce up to 600 J with pulses of 0.4-200 ps, has begun initial target shots. Coupled with a kJ long-pulse beam, Titan will support high-energy-density physics research at LLNL.

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Main Authors: Stuart, B.C., Bonlie, J.D., Britten, J.A., Caird, J.A., Cross, R.R., Ebbers, C.A., Eckart, M.J., Erlandson, A.C., Molander, W.A., Ng, A., Patel, P.K., Price, D.F.
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Language:English
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creator Stuart, B.C.
Bonlie, J.D.
Britten, J.A.
Caird, J.A.
Cross, R.R.
Ebbers, C.A.
Eckart, M.J.
Erlandson, A.C.
Molander, W.A.
Ng, A.
Patel, P.K.
Price, D.F.
description The Titan laser, designed to produce up to 600 J with pulses of 0.4-200 ps, has begun initial target shots. Coupled with a kJ long-pulse beam, Titan will support high-energy-density physics research at LLNL.
doi_str_mv 10.1109/CLEO.2006.4628707
format conference_proceeding
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identifier EISSN: 2160-9004
ispartof 2006 Conference on Lasers and Electro-Optics and 2006 Quantum Electronics and Laser Science Conference, 2006, p.1-2
issn 2160-9004
language eng
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source IEEE Xplore All Conference Series
subjects (050.1950) Diffraction gratings
(140.3530) Lasers
(140.4480) Optical amplifiers
(140.7090) Ultrafast lasers
(320.5520) Pulse compression
Chirp
Gratings
Laser beams
Laser theory
neodymium
Optical amplifiers
Optical filters
Optical pulses
title The Titan laser at LLNL
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