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    Improving the relativistic self-focusing of intense laser beam in plasma using density transition

    , Article Physics of Plasmas ; Volume 16, Issue 8 , 2009 ; 1070664X (ISSN) Sadighi Bonabi, R ; Habibi, M ; Yazdani, E ; Sharif University of Technology
    2009
    Abstract
    The propagation of a Gaussian beam in underdense plasma with upward increasing density ramp is analyzed. In this work are shown that the spot size oscillations of laser beam increases and its amplitude shrinks with proper plasma density ramp. This causes the laser beam to become more focused and penetrations deep into the plasma by reduction of diffraction effect. The related focusing parameters are optimized to get the best possible focusing at the relativistic threshold intensity of Nd-glass laser and the effect of the laser intensity in the self-focusing parameters is also investigated. The analytical calculations are presented and showed more reliable results in comparison to the... 

    Generation of plasma blocks accelerated by nonlinear forces from ultraviolet KrF laser pulses for fast ignition

    , Article Laser and Particle Beams ; Volume 28, Issue 1 , 2010 , Pages 101-107 ; 02630346 (ISSN) Sadighi Bonabi, R ; Hora, H ; Riazi, Z ; Yazdani, E ; Sadighi, S. K ; Sharif University of Technology
    2010
    Abstract
    Here we report on the production of highly directed ion blocks by plasma interaction of ultraviolet wavelength light produced from a KrF laser. This may support the requirement to produce a fast ignition deuterium-tritium fusion at densities not much higher than the solid state by a single shot petawatt-picoseconds ultraviolet laser pulse. Using double Rayleigh initial density profiles, we are studying numerically how the nonlinear force necessary to accelerate plasma blocks may reach the highest possible thickness. Propagation of plasma blocks and the volumetric hot electrons can be shown in detail. Results of computations for wavelengths of two lasers are compared, which show that the... 

    Photoconductivity and diode effect in Bi rich multiferroic BiFeO 3 thin films grown by pulsed-laser deposition

    , Article Journal of Materials Science: Materials in Electronics ; Volume 22, Issue 7 , 2011 , Pages 815-820 ; 09574522 (ISSN) Ahadi, K ; Mahdavi, S. M ; Nemati, A ; Kianinia, M ; Sharif University of Technology
    2011
    Abstract
    Bismuth ferrite, BiFeO 3, is almost the only material that is simultaneously magnetic and a strong ferroelectric at room temperature. As a result it is the most investigated multiferroic material. In this study, bismuth ferrite thin films were deposited on silicon wafer (100) and glass by pulsed-laser deposition and their structural, optical, and electrical properties were measured. Our study indicates that Bi richness in these films can stimulate formation of oxygen vacancy in the system which in its turn leads to delocalization of carriers and a more intensified photoconductivity response. X-ray diffraction analysis revealed formation of BiFeO 3 (BFO), but it also showed formation of Bi 2O...