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    NumericalModel for Surface Scattering and Grain Boundary Scattering of Metallic Wires

    , M.Sc. Thesis Sharif University of Technology Abbaspour, Elhame (Author) ; Sarvari, Reza (Supervisor)
    Abstract
    Recently, the size of copper interconnects is going to reach lower than the mean free path of electrons for copper. In this situation, we should consider the effect of other scattering mechanisms as well as thermal scattering on copper thin films. In this work we study both DC size effect and anomalous skin effect on resistivity by a Monte Carlo method. Contribution of each scattering mechanism and the interaction between them are analyzed separately. The structure of electrical field and distribution of current in thin films have also been studied. Investigating of the effect of exact nature of surface scattering and grain boundary scattering on resistivity is one of the interests of this... 

    The Burridge-Knopoff Model on Rough Surfaces

    , M.Sc. Thesis Sharif University of Technology Movahhednejad, Hamid Reza (Author) ; Moghimi Araghi, Saman (Supervisor)
    Abstract
    Earthquakes are of self-organized critical phenomena, the phenomena that exhibit scaling behavior without tuning external parameters. A number of models have been proposed to describe such features of earthquakes, the most known one is the Burridge-Knopoff model. The Burridge-Knopof model is a spring-block system where the blocks slip on a plate which has friction and are attached through some other springs to a moving plate. Because of the moving plate the blocks become under increasing tension but do not move until the tension overcomes the static friction. As a result, the blocks will move and then stop repeatedly. These movements are avalanche-like and their intensity obeys a power-law... 

    Application of Loop Ensembles in Surface Growth Models

    , M.Sc. Thesis Sharif University of Technology Soltaniehha, Mohammad (Author) ; Rouhani, Shahin (Supervisor)
    Abstract
    Statistical mechanics offers an important outlook for studying rough surfaces. Loop model is one of the effective statistical methods for study of surfaces. We present and analyze this method for characterization of the morphology of rough surfaces. By statistics of contour loops which could be obtained from an ensemble of a surface such as the SOS model, one can calculate fractal dimension, loops’ length and the probability of connection of two points by a certain loop, etc. Armed with these results, critical exponents in two dimensions are exactly obtainable. In this thesis, after reviewing the properties of different rough surfaces, we shall pursue some results on statistical analysis of... 

    An efficient 2D rough surface scattering analysis using strong harmonics extraction and the Kirchhoff approach

    , Article Applied Computational Electromagnetics Society Journal ; Volume 29, Issue 2 , 1 February , 2014 , Pages 163-169 ; ISSN: 10544887 Torabi, A ; Shishegar, A. A ; Sharif University of Technology
    Abstract
    An efficient method for scattering analysis from slightly rough surfaces is introduced. This method can be used in ray tracing algorithm where the computational efficiency is important due to the complexity and size of problems. In this method, the Kirchhoff approach is used for a periodic extension of the finite surface, which is approximated by strong harmonics of its Fourier series. Typical asphalt surfaces are analyzed by this method in millimeter-wave band and validated with the method of moments. The dominant scattering angles and ray widths of the scattered field can be easily used in ray tracing algorithm. The computation time and accuracy of results show that this method can be used... 

    Millimeter-Wave Scattering Analysis from Rough Surfaces

    , M.Sc. Thesis Sharif University of Technology Torabi, Abdorreza (Author) ; Shishegar, Amir Ahmad (Supervisor)
    Abstract
    Electromagnetic wave scattering from rough surfaces has been the subject of intensive investigations over the past several decades for its applications in important remote sensing problems. The problem of scattering from random rough surfaces hasn't full analytical closed form solution. In millimeter-wave band some surfaces like asphalt, concrete, which has roughness in millimeter range, must be considered as rough surfaces. A major part of the literatures are specified to numerical and statistical approach. In this thesis the electromagnetic waves scattering from rough surfaces in millimeter-wave band is studied. The main goal of this thesis is to find the available ways for applying the... 

    Scattering from Periodic Rough Surfaces Using Complex Images Green’s Function

    , M.Sc. Thesis Sharif University of Technology Barzegar Parizi, Saeedeh (Author) ; Shishegar, Amir Ahmad (Supervisor)
    Abstract
    Analysis of periodic structures is an important topic in the electromagnetic wave theory. Also, scattering from rough surfaces is of importance due to its theoretical and practical aspects. Integral equation approaches in combination with the Method of Moments (MoM) are among the most frequently used techniques for solving scattering problems related to rough surfaces due to their flexibility in modeling different geometries. Here, the electromagnetic wave scattering from periodic rough surfaces is carried out using MoM and a closed form Green’s function that accelerates the computation. Different methods, previously proposed to accelerate the convergence of periodic Green’s function are... 

    Accurate numerical model for surface scattering, grain boundary scattering, and anomalous skin effect of copper wires

    , Article Proceedings - Winter Simulation Conference ; January , 2013 , Pages 209-210 ; 08917736 (ISSN) ; 9781467348416 (ISBN) Abbaspour, E ; Sarvari, R ; Akbarzadeh, A ; Rostami, M ; Sharif University of Technology
    2013
    Abstract
    In this paper we have studied both DC size effect and anomalous skin effect caused by surface and grain boundary scattering on the resistivity of Cu thin films by a Monte Carlo method. Contribution of each scattering mechanism and the interaction between them are analyzed separately. A simple and fast numerical recursive method is also introduced to guess the structure of electric field and distribution of current inside the thin film to evaluate the surface resistance instead of complicated analytical formulas  

    Scattering of surface plasmons on graphene by a discontinuity in surface conductivity

    , Article Journal of Optics (United Kingdom) ; Volume 17, Issue 7 , June , 2015 ; 20408978 (ISSN) Rejaei, B ; Khavasi, A ; Sharif University of Technology
    Institute of Physics Publishing  2015
    Abstract
    The scattering of graphene surface plasmons from an arbitrary, one-dimensional discontinuity in graphene surface conductivity is treated analytically by an exact solution of the quasi-static integral equation for surface current density in the spectral domain. It is found that the reflection and transmission coefficients are not governed by the Fresnel formulas obtained by means of the effective medium approach. Furthermore, the reflection coefficient generally exhibits an anomalous reflection phase, which has so far only been reported for the particular case of reflection from abrupt edges. This anomalous phase becomes frequency-independent in the regime where the effect of inter-band... 

    Scattering analysis of human body modeled by NURBS surfaces in MM-wave band

    , Article Conference on Millimeter-Wave and Terahertz Technologies, MMWaTT, 30 December 2014 through 1 January 2015 ; Volume 2015-March , December-January , 2015 ; 21570965 (ISSN) ; 9781479965915 (ISBN) Mokhtari Koushyar, F ; Shishegar, A. A ; Sharif University of Technology
    Institute of Electrical and Electronics Engineers Inc  2015
    Abstract
    In this paper, we propose a frequency-independent method for calculation of scattered electromagnetic (EM) fields by the human body in millimeter-wave (MMW) band. The surface of the body is accurately modeled by non-uniform rational B-spline (NURBS) surfaces and is illuminated by a plane wave. The scattered EM fields are formulated by physical optics (PO) approximation. This approximation yields PO surface highly oscillatory integrals that are solved by numerical steepest descent path (NSDP) method, frequency-independently. This paper provides an efficient and accurate method for considering human body in indoor propagation, surveillance and medical imaging, and detection of human body by... 

    Molecular dynamics simulation investigation of hexanoic acid adsorption onto calcite (1014)surface

    , Article Fluid Phase Equilibria ; Volume 387 , 2015 , Pages 24-31 ; 03783812 (ISSN) Ghatee, M. H ; Koleini, M. M ; Ayatollahi, S ; Sharif University of Technology
    Abstract
    In this paper we report the results of classical molecular dynamics (MD) simulation of hexanoic acid adsorption on calcite (101-4) surface plane using Pavese and AMBER force fields for calcite and hexanoic acid, respectively. Pair correlation function, strictly suggests a well-structured adsorption. Density profile indicates the adsorption occurs through double-bonded O atom of the acid head group by direct interaction with Ca atom at calcite surface. Adsorption orientation of H and double-bonded O atoms was found to be as lock and key with respect to calcite surface Ca and O atoms, facilitating an effective adsorption. Adsorption time evolution indicates that O atom adsorption is... 

    Scattering of transverse surface waves by a piezoelectric fiber in a piezoelectric half-space with exponentially varying electromechanical properties

    , Article Zeitschrift fur Angewandte Mathematik und Physik ; Volume 70, Issue 2 , 2019 ; 00442275 (ISSN) Ghafarollahi, A ; Shodja, H. M ; Sharif University of Technology
    Birkhauser Verlag AG  2019
    Abstract
    In the present work, an analytical solution is presented for the scattering of transverse surface waves by a homogeneous piezoelectric fiber contained in a functionally graded piezoelectric half-space with exponential variation. The boundary value problem of interest is solved by constructing an appropriate set of multipole functions which satisfy: (a) the electromechanical field equations in the half-space, (b) the boundary conditions along its free surface, and (c) the far-filed radiation conditions. It is shown that the simple poles of these functions are related to the roots of the pertinent dispersion relation. For the case of electrically short condition along the free surface of the... 

    Frequency conversion and parametric amplification using a virtually rotating metasurface

    , Article Optics Express ; Volume 28, Issue 5 , 2020 , Pages 6378-6394 Seyedrezaei, Z ; Rejaei, B ; Memarian, M ; Sharif University of Technology
    OSA - The Optical Society  2020
    Abstract
    We analyze the scattering of circularly polarized electromagnetic waves from a time-varying metasurface having a time-dependent surface susceptibility that locally mimics a rotating, anisotropic surface. Such virtually rotating metasurfaces (VRM) can be realized by means of electronically tunable surface elements and reach microwave-range rotation frequencies. It is shown that the scattered field contains the incident tone, as well as a single up-or down converted tone which differs by twice the rotation frequency of the surface. A simple full frequency converter is then proposed by augmenting the VRM with a metal screen separated by a proper distance. It is shown that after reflection from... 

    Scattering computation of slightly rough gaussian surfaces by kirchhoff approach with harmonic extraction analysis

    , Article IET Conference Publications, 3 November 2009 through 6 November 2009, Beijing ; Volume 2009, Issue 557 CP , 2009 , Pages 292-295 ; 9781849191401 (ISBN) Torabi, A ; Shishegar, A. A ; Sharif University of Technology
    Abstract
    The problem of electromagnetic wave scattering from rough surfaces has been the subject of intensive investigations over the past several decades for its applications in a number of important remote sensing implementations. For slightly rough surfaces that the radius of curvature of surface is bigger than the wavelength, the Kirchhoff method is the most commonly used approach. In this paper a new way for scattering computation from rough surfaces is introduced. Here Kirchhoff approach is applied for considering the electromagnetic wave interaction with slightly rough Gaussian surfaces. Fourier series of rough Gaussian surface is used for extracting the strong harmonics of the surface. Then... 

    Human cardiac troponin i sensor based on silver nanoparticle doped microsphere resonator

    , Article Journal of Optics (United Kingdom) ; Volume 14, Issue 12 , 2012 ; 20408978 (ISSN) Saliminasab, M ; Bahrampour, A ; Zandi, M. H ; Sharif University of Technology
    Abstract
    Human cardiac troponin I (cTnI) is a specific biomarker for diagnosis of acute myocardial infarction (AMI). In this paper, a composite sensing system of an optical microsphere resonator and silver nanoparticles based on surface enhanced Raman scattering (SERS) and stimulated Raman scattering (SRS) techniques towards a point of care diagnostic system for AMI using the cTnI biomarker in HEPES buffered solution (HBS) is proposed. Pump and Raman signals enter the optical fiber coupling into the microsphere, and then SRS occurs in the microsphere. The presence of silver nanoparticles on the microsphere surface provides a tremendous enhancement of the resulting Raman signal through an... 

    Electromagnetic scattering from perfectly conducting periodic rough surfaces using complex images technique

    , Article 2010 IEEE International Symposium on Antennas and Propagation and CNC-USNC/URSI Radio Science Meeting - Leading the Wave, AP-S/URSI 2010, 11 July 2010 through 17 July 2010 ; July , 2010 ; 9781424449682 (ISBN) Barzegar Parizi, S ; Shishegar, A. A ; Sharif University of Technology
    2010
    Abstract
    Eelectromagnetic analysis of periodic structures is important in the electromagnetic theory. Among them, the electromagnetic wave scattering analysis from rough surfaces is of importance due to both theoretical and practical points of view. For slow variation periodic surfaces the solution can be obtained under the Rayleigh hypothesis in terms of Floquet modes [1]. Integral equation approaches in combination with the method of Moments are among the most frequently used in the solution of scattering problems related to periodic surface due to their flexibility in modeling different geometries [2-3]. Due to slowly convergence of infinite series periodic Green's function, these methods need... 

    Surface/interface effect on the scattering of Love waves by a nano-size surface-breaking crack within an ultra-thin layer bonded to an elastic half-space

    , Article International Journal of Solids and Structures ; Volume 108 , 2017 , Pages 63-73 ; 00207683 (ISSN) Shodja, H. M ; Ghafarollahi, A ; Enzevaee, C ; Sharif University of Technology
    Abstract
    Using the mathematical framework of surface/interface elasticity theory, an analytical solution is presented for the antiplane scattering of Love waves by a surface-breaking crack normal to the free surface of an ultra-thin layer bonded to a semi-infinite medium. Fourier transform technique is used to formulate the corresponding mixed-boundary value problem as a singular integral equation of Cauchy type. Within the context of the present theory, the scattered stress field, the Mode III dynamic stress intensity factor (DSIF) at the crack-tip, and the reflection coefficient at large distances from the crack face are computed and plotted for different wave numbers and surface/interface... 

    Computational electromagnetics in plasmonic nanostructures

    , Article Journal of Materials Chemistry C ; Volume 9, Issue 31 , 2021 , Pages 9791-9819 ; 20507534 (ISSN) Amirjani, A ; Sadrnezhaad, K ; Sharif University of Technology
    Royal Society of Chemistry  2021
    Abstract
    Plasmonic nanostructures have emerging applications in solar cells, photodynamic therapies, surface-enhanced Raman scattering detection, and photocatalysis due to the excitation of localized surface plasmons. The exciting electric field resulting from the collective oscillation of free electrons is highly dependent on the dielectric medium, shape, size, composition, and configuration of plasmonic nanostructures. From an engineering perspective, one can tune the optimal properties in the desired applications of geometrical parameters such as the shape, size, and nanoparticles' configuration. Such optimization should be performed analytically (with exact solutions) or numerically (with... 

    Thorough tuning of the aspect ratio of gold nanorods using response surface methodology

    , Article Analytica Chimica Acta ; Volume 779 , 2013 , Pages 14-21 ; 00032670 (ISSN) Hormozi Nezhad, M. R ; Robatjazi, H ; Jalali Heravi, M ; Sharif University of Technology
    2013
    Abstract
    In the present work a central composite design based on response surface methodology (RSM) is employed for fine tuning of the aspect ratios of seed-mediated synthesized gold nanorods (GNRs). The relations between the affecting parameters, including ratio of l-ascorbic acid to Au3+ ions, concentrations of silver nitrate, CTAB, and CTAB-capped gold seeds, were explored using a RSM model. It is observed that the effect of each parameter on the aspect ratio of developing nanorods highly depends on the value of the other parameters. The concentrations of silver ions, ascorbic acid and seeds are found to have a high contribution in controlling the aspect ratios of NRs. The optimized parameters led... 

    A study of the effect of diffraction and rough surface scatter modeling on ray tracing results in an urban environment at 60 GHz

    , Article 1st Conference on Millimeter-Wave and Terahertz Technologies, 29 December 2009 through 31 December 2009 ; 2009 , Pages 27-31 ; 9781424468089 (ISBN) Eslami Rasekh, M ; Shishegar, A. A ; Farzaneh, F ; Sharif University of Technology
    Abstract
    Channel characterization is an important step in the design of wireless communication systems. While channel sounding procedures are a useful method in determining channel behavior, they also require expensive and time consuming procedures and equipment. Ray tracing has been an important substitute for measurement in deterministic channel modeling and characterization of the wireless channel. Much has been done to improve the precision and efficiency of this method for lower frequency bands (generally below 5 GHz) over the years. Recently, with the worldwide announcement of a broad unlicensed band in the millimeter wave spectrum around 60 GHz, a great amount of attention has been paid to... 

    Detection of molecular vibrations of atrazine by accumulation of silver nanoparticles on flexible glass fiber as a surface-enhanced Raman plasmonic nanosensor

    , Article Optical Materials ; Volume 128 , 2022 ; 09253467 (ISSN) Eskandari, V ; Kordzadeh, A ; Zeinalizad, L ; Sahbafar, H ; Aghanouri, H ; Hadi, A ; Ghaderi, S ; Sharif University of Technology
    Elsevier B.V  2022
    Abstract
    Surface-Enhanced Raman Spectroscopy (SERS) is a sensitive vibration spectroscopy method applied to analyze a variety of analytes, including toxins and pesticides. The SERS method is an accurate method for detecting significantly low concentrations of biomaterials and chemicals. In the present study, in order to detect atrazine pesticide, the glass fiber substrates coated with silver nanoparticles have been used as SERS plasmonic nanosensors. First, silver nanoparticles were prepared by applying a chemical approach named the Tollens' method, and the SERS plasmonic substrates (SPS) were fabricated by depositing the colloidal silver solution on a glass fiber substrate. The SERS plasmonic...