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What does HAPL stand for?

HAPL stands for High Average Power Lasers

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Samples in periodicals archive:

ONCE developed chiefly for physics research, high-energy, high-average-power lasers are now used in a diverse range of applications, such as high-speed manufacturing...
High-Powered Lasers; Journal Articles; NIF Users. NIF User Portal; optical and hydraulic requirements necessary for high-average-power lasers. To date...
2 Research Opportunities in High Energy and High Average Power Lasers Contents Title Page Executive Summary Charge to the Panel Panel Participants
John Sethian (Naval Research Laboratory) described the status of laser fusion energy and the High Average Power Laser Program (HAPL). He noted that the HAPL program...
Very high average power lasers with high electrical-top-optical (E-O) efficiency, which also support pulse position modulation (PPM)...
John E. Marion and Alexander J. Pertica "Materials For High Average Power Lasers", Proc. SPIE 1040, High Power and Solid State Lasers II, 2 (July 6, 1989); doi:10...
Free Online Library: High average power laser progress.(the High Average Power Laser Program, a national program dedicated to developing Inertial Fusion...
M. Stickley, "SHEDS Applications to High Average Power Lasers," in Conference on Lasers and Electro-Optics/Quantum Electronics and Laser Science Conference and...
Abstract Unique materials properties requirements for solid state high average power (HAP) lasers dictate a materials development research program.
Photonics.com search results: high-average-power lasers. Advertise Subscribe. Login Register. The latest on light research and applications from Photonics Media.
Efim A. Khazanov "Novel Faraday rotator for high-average-power lasers", Proc. SPIE 4271, Optical Pulse and Beam Propagation III, 339 (April 12, 2001); doi:10.1117/12...
Abstract Phosphate glass compositions with superior properties for operation as active elements in high average power lasers have been developed.
Faraday isolators for high (>1kW)average power lasers Oleg V. Palashov Institute of Applied Physics RAS, 603950, 46 Ulyanov street, Nizhniy Novgorod, Russia
Adaptive Optics for Wavefront Correction of High Average Power Lasers Justin Mansell, Supriyo Sinha, Todd Rutherford, Eric Gustafson, Martin Fejer and.
Adaptive Optics for Wavefront Correction of High Average Power Lasers - LSC Meeting March 14 -17 2001 Livingston, LA
Compensation of thermal effects in Faraday isolator for high average power lasers.
Compensation of thermal effects in Faraday isolator for high average power lasers; Compensation of thermal effects in Faraday isolator for high average power lasers
Considering the high average power lasers in industry today, Materials processing with an FEL combine the advantages of ultrafast, low average power lasers with high
Adaptive Optics for Wavefront Correction of High Average Power Lasers - PowerPoint PPT Presentation
Citations to the article A new Faraday rotator for high average power lasers
Faraday Isolators for High Average Power Lasers 47 The light absorption in MOE generates a temperat ure distribution that is nonuniform over a
Spatial filters for high average power lasers United States Patent. Patent Number: 8,320,056: Issued: November 27, 2012: Official Filing...
Faraday isolators for high average power lasers operating at room temperature are surveyed. Three devices on [001] oriented TGG crystals with the most known optical...
Publication » Faraday Isolators for High Average Power Lasers; Faraday isolators for high average power lasers operating at room temperature are surveyed.
Publication » High Average Power Lasers for the Photon Collider.
Frequency conversion of high peak and high average power lasers. Brief Record; Full Record; Statistics; Description...
Faraday Isolators for High Average Power Lasers - How to Link and Reference | InTechOpen, Published on: 2010-02-01. Authors: Efim Khazanov
In this lab we are studying laser materials with high-density energy storage and low quantum defect as candidates for high-average-power lasers. For example...
Because high-average-power lasers demand extremely high reliability and maintainability, HAPLS also will test a number of concepts for industrial applications.
Compensation of thermally induced depolarization in Faraday isolators for high average power lasers Ilya Snetkov, Ivan Mukhin, Oleg Palashov, and Efim Khazanov