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Christopher A. Ebbers

Researcher at Lawrence Livermore National Laboratory

Publications -  100
Citations -  1800

Christopher A. Ebbers is an academic researcher from Lawrence Livermore National Laboratory. The author has contributed to research in topics: Laser & Mercury laser. The author has an hindex of 18, co-authored 100 publications receiving 1724 citations. Previous affiliations of Christopher A. Ebbers include University of California, Berkeley.

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Second-harmonic generation in zinc tris(thiourea) sulfate

TL;DR: The linear and second-order nonlinear optical properties of single-crystal zinc tris(thiourea) sulfate, or ZTS, are determined and the calculated frequency conversion efficiency for ZTS is compared with that of several other well-characterized materials.
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L-Histidine tetrafluoroborate: a solution-grown semiorganic crystal for nonlinear frequency conversion.

TL;DR: The crystal structure, refractive indices, and phase-matching conditions for a new nonlinear optical material, L-histidine tetrafluoroborate, are reported and the effective nonlinearity is comparable with that of beta-barium borate.
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Demonstration of a 1.1 petawatt laser based on a hybrid optical parametric chirped pulse amplification/mixed Nd:glass amplifier

TL;DR: The design and performance of the Texas Petawatt Laser, which produces a 186 J 167 fs pulse based on the combination of optical parametric chirped pulse amplification (OPCPA) and mixed Nd:glass amplification, is presented.
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Optical parametric chirped-pulse amplifier as an alternative to Ti:sapphire regenerative amplifiers

TL;DR: This relatively simple system replaces a more complex Ti:sapphire regenerative-amplifier-based chirped-pulse amplification system and successfully amplified 1-microm broadband oscillator pulses to 31 mJ and recompressed them to 310-fs pulse duration, at a 10-Hz repetition rate.