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Dive into the research topics where Alexander M. Rubenchik is active.

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Featured researches published by Alexander M. Rubenchik.


Applied Optics | 2000

Rear-surface laser damage on 355-nm silica optics owing to Fresnel diffraction on front-surface contamination particles

Francois Genin; M.D. Feit; Mark R. Kozlowski; Alexander M. Rubenchik; Alberto Salleo; James Yoshiyama

Light intensity modulations caused by opaque obstacles (e.g., dust) on silica lenses in high-power lasers often enhance the potential for laser-induced damage. To study this effect, particles (10-250 mum) with various shapes were sputter deposited on the input surface and irradiated with a 3-ns laser beam at 355 nm. Although a clean silica surface damages at fluences above 15 J/cm(2), a surface contaminated with particles can damage below 11.5 J/cm(2). A pattern that conforms to the shape of the input surface particle is printed on the output surface. Repetitive illumination resulted in catastrophic drilling of the optic. The damage pattern correlated with an interference image of the particle before irradiation. The image shows that the incident beam undergoes phase (and amplitude) modulations after it passes around the particle. We modeled the experiments by calculating the light intensity distribution behind an obscuration by use of Fresnel diffraction theory. The comparison between calculated light intensity distribution and the output surface damage pattern showed good agreement. The model was then used to predict the increased damage vulnerability that results from intensity modulations as a function of particle size, shape, and lens thickness. The predictions provide the basis for optics cleanliness specifications on the National Ignition Facility to reduce the likelihood of optical damage.


Archive | 2000

Face-lifting device

Paul J. Weber; Luiz Barroca Da Silva; Alexander M. Rubenchik


Archive | 1996

Ultrashort pulse high repetition rate laser system for biological tissue processing

Joseph Neev; Luiz Eduardo Borges da Silva; Dennis L. Matthews; Michael Glinsky; Brent C. Stuart; Michael D. Perry; M.D. Feit; Alexander M. Rubenchik


Archive | 2000

Tissue removal using biocompatible materials

Paul J. Weber; Luiz Barroca Da Silva; Alexander M. Rubenchik


Archive | 2000

Fat layer thickness mapping system to guide liposuction surgery

Paul J. Weber; Luiz Barroca Da Silva; Alexander M. Rubenchik


Archive | 2000

Thermal radiation facelift device

Paul J. Weber; Luiz Barroca Da Silva; Alexander M. Rubenchik


Archive | 2001

Tissue resurfacing using biocompatible materials

Paul J. Weber; Luiz Barroca Da Silva; Alexander M. Rubenchik


Archive | 2002

In-stent restenosis detection device

Luiz Barroca Da Silva; Victor C. Esch; Alexander M. Rubenchik; Jonathan Hares; Joseph D. Kilkenny; Gilbert W. Collins; Paul J. Weber


Archive | 2002

Ultrasound plaque emulsion device

Alexander M. Rubenchik; Paul J. Weber; Luiz Barroca Da Silva


Archive | 2001

Integrated wine quality sensor

Kenneth B. Trauner; Paul J. Weber; Alexander M. Rubenchik; Silva Luiz B. Da

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Michael D. Feit

Lawrence Livermore National Laboratory

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Luiz Barroca Da Silva

Lawrence Livermore National Laboratory

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Michael D. Perry

Lawrence Livermore National Laboratory

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Brent C. Stuart

Lawrence Livermore National Laboratory

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Joseph Neev

University of California

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Aleksey M. Komashko

Lawrence Livermore National Laboratory

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