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    Side lobe level reduction of any type of linear equally spaced array using the method of convolution

    , Article Progress in Electromagnetics Research Letters ; Volume 66 , 2017 , Pages 79-84 ; 19376480 (ISSN) Alijani, M. G ; Neshati, M. H ; Boozari, M ; Sharif University of Technology
    Electromagnetics Academy  2017
    Abstract
    In most applications of antenna arrays, side lobe levels (SLLs) are commonly unwanted. Especially, the first side lobe level which determines maximum SLL is the main source of electromagnetic interference (EMI), and hence, it should be lowered. A procedure of finding the optimum side lobe-minimizing weights for an arbitrary linear equally spaced array is derived, which holds for any scan direction, beam width, and type of antenna element used. In this science article, the use of convolution procedure and the time scaling property reduces the side lobe level for any type of linear equally spaced array. Results show that by this procedure, the side lobe level is reduced about two times or even... 

    Beamforming Through Array Thinning

    , M.Sc. Thesis Sharif University of Technology Tohidi, Ehsan (Author) ; Nayebi, Mohammad Mahdi (Supervisor)
    Abstract
    Modern communication and space systems such as satellite communication devices, radars, SAR and radio astronomy interferometers are realized with large antenna arrays since this kind of radiating systems are able to generate radiation patterns with high directivity and resolution. In such a framework, conventional arrays with uniform inter-element spacing could be not satisfactory in terms of costs and dimensions. An interesting alternative is to reduce the array elements obtaining the so called ‘ thinned arrays’. Large thinned arrays have been exploited because of their advantages in terms of weight,consumption, hardware complexity, and cost over the... 

    Generating the optimum self-focusing in the relativistic laser-plasma interaction

    , Article IEEE Transactions on Plasma Science ; Volume 41, Issue 5 , 2013 , Pages 1570-1574 ; 00933813 (ISSN) Moshkelgosha, M ; Sadighi Bonabi, R ; Sharif University of Technology
    2013
    Abstract
    In this paper, the effect of basic parameters of laser and plasma on controlling self-focusing is investigated, and based on the introduced effective parameter for self-focusing (EPSF), the effects of laser wavelength, the initial spot size of laser beam, the initial intensity of laser, and the plasma electron density on self-focusing are discussed. It is found that the relativistic self-focusing strongly depend on the laser wavelength and the beam intensity. The nonlinear effect of beam intensity on the introduced parameter EPSF indicates that after an increasing region for focusing, the self-focusing effect decreases at ultrarelativistic intensities. The effect of the initial beam spot... 

    Relativistic Gaussian laser beam self-focusing in collisional quantum plasmas

    , Article Laser and Particle Beams ; Volume 33, Issue 3 , 2015 , Pages 397-403 ; 02630346 (ISSN) Zare, S ; Rezaee, S ; Yazdani, E ; Anvari, A ; Sadighi Bonabi, R ; Sharif University of Technology
    Cambridge University Press  2015
    Abstract
    Propagation of Gaussian X-ray laser beam is presented in collisional quantum plasma and the beam width oscillation is studied along the propagation direction. It is noticed that due to energy absorption in collisional plasma, the laser energy drops to an amount less than the critical value of the self-focusing effect and consequently, the laser beam defocuses. It is found that the oscillation amplitude of the laser spot size enhances while passing through collisional plasma. For the greater values of collision frequency, the beam width oscillates with higher amplitude and defocuses in a shallower plasma depth. Also, it is realized that in a dense plasma environment, the laser self-focusing... 

    Investigation of Energetic Electrons Behavior in Ultrafast High Power Laser-Matter Interaction

    , Ph.D. Dissertation Sharif University of Technology Moshkel-Gosha, Masoume (Author) ; Sadighi-Bonabi, Rasoul (Supervisor)
    Abstract
    Resent advances in ultra-intense short-pulse lasers and their numerous applications stimulated the research activities in important fields such as generation of high-energy electron and ion beams, monoenergetic electron beam, monoenergetic ion beam, X-ray emission, terahertz radiation, high harmonic and attosecond pulses generation. In all above mentioned applications the relativistic electrons behavior especially the electron density distribution and the velocity of electrons play an important role.
    Investigating the behavior of relativistic electrons which are generated in the interaction of high power femtosecond lasers with plasma and their related applications is the main purpose... 

    Self-focusing up to the incident laser wavelength by an appropriate density ramp

    , Article Laser and Particle Beams ; Volume 29, Issue 4 , 2011 , Pages 453-458 ; 02630346 (ISSN) Sadighi Bonabi, R ; Moshkelgosha, M ; Sharif University of Technology
    Abstract
    This work is devoted to improving relativistic self-focusing of intense laser beam in underdense unmagnetized plasma. New density profiles are introduced to achieve beam width parameter up to the wavelength of the propagating laser. By investigating variations of the beam width parameter in presence of different density profiles it is found that the beam width parameter is considerably decreased for the introduced density ramp comparing with uniform density and earlier introduced density ramp profiles. By using this new density profile high intensity laser pulses are guided over several Rayleigh lengths with extremely small beam width parameter  

    Dynamic programming applied to large circular arrays thinning

    , Article IEEE Transactions on Antennas and Propagation ; Volume 66, Issue 8 , 2018 , Pages 4025-4033 ; 0018926X (ISSN) Tohidi, E ; Nayebi, M. M ; Behroozi, H ; Sharif University of Technology
    Institute of Electrical and Electronics Engineers Inc  2018
    Abstract
    In conventional arrays, improving angular resolution requires larger aperture which demands more number of elements. On the other hand, array thinning is an efficient method of achieving narrow beamwidth (high angular resolution) with fewer number of elements. Reducing the number of elements results in reducing weight, cost, hardware complexity, and energy consumption. In this paper, a novel dynamic programming algorithm of array thinning with the objective of reducing sidelobe levels (SLLs), desired for large circular arrays, is proposed. The circular array is partitioned into annular rings, and the objective of the optimization problem is to determine the number of active elements in each... 

    Imaging based on a fast back-projection algorithm considering antenna beamwidth

    , Article 6th Iranian Conference on Radar and Surveillance Systems, ICRSS 2019, 4 December 2019 through 6 December 2019 ; 2019 ; 9781728129372 (ISBN) Gharamohammadi, A ; Behnia, F ; Shokouhmand, A ; Sharif University of Technology
    Institute of Electrical and Electronics Engineers Inc  2019
    Abstract
    In ground penetrating radar (GPR), back projection (BP) approach is a reliable method to image underground buried objects which unfortunately suffers from a high computational burden. In the BP algorithm, the refraction points have to be approximated to decrease the computational complexity. Another parameter that can improve both the accuracy and the speed of the algorithm is the antenna pattern. The 2-D algorithm is a convenient method which entails high artifacts. The proposed algorithm implemented in the 3-D domain is able to decrease the artifacts and is also a better discriminator. Meanwhile, it is possible to reconstruct a 2-D image with a better resolution in which artifacts have...