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    Anomalous magnetic moment of hot quarks, inverse magnetic catalysis, and reentrance of the chiral symmetry broken phase

    , Article Physical Review D - Particles, Fields, Gravitation and Cosmology ; Vol. 90, issue. 10 , 2014 ; ISSN: 15507998 Fayazbakhsh, S ; Sadooghi, N ; Sharif University of Technology
    2014
    Abstract
    The effect of the anomalous magnetic moment of quarks on thermodynamic properties of the chiral condensate is studied, using a two-flavor Nambu-Jona-Lasinio model at finite temperature T, chemical potential μ, and in the presence of a uniform magnetic field eB. To this purpose, the Schwinger linear-in-B ansatz for the anomalous magnetic moment of quarks is considered in terms of the nonperturbative Bohr magneton. In a two-dimensional flavor space, it leads to the correction TSch=κQeB in the energy dispersion relation of quarks. Here, Q is the quark charge matrix. We consider three different sets for κ, and numerically determine the dependence of the constituent quark mass on T,μ, and eB for... 

    Two-flavor color superconductivity at finite temperature, chemical potential and in the presence of strong magnetic fields

    , Article Proceedings of Science ; 2012 , p-3 ; 18248039 (ISSN) Fayazbakhsh, Sh ; Sadooghi, N ; Sharif University of Technology
    2012
    Abstract
    Utilizing an extended two-flavor Nambu-Jona Lasinio (NJL) model, we review some of the effects of external magnetic fields on two-flavor color superconducting phase (2SC) at moderate baryon densities in the QCD phase diagram. The effective action of the extended NJL model consists of two mass gaps as functions of three intensive quantities, the temperature, the quark chemical potential and the external magnetic field. The nonzero values of the mass gaps, chiral and diquark condensates, induce spontaneous chiral and color symmetry breaking, respectively, and as a result two different phases of quark matter appear. We find the transition curves between these phases as well as the critical... 

    Materials selection for electronic enclosures in space environment considering electromagnetic interference effect

    , Article Advances in Space Research ; Volume 49, Issue 3 , February , 2012 , Pages 586-593 ; 02731177 (ISSN) Fayazbakhsh, K ; Abedian, A ; Sharif University of Technology
    2012
    Abstract
    Using low power electronic devices for space applications to reduce the mass and energy consumption has lead to electromagnetic interference (EMI) problem. Electronic enclosures are used to shield electronic devices against EMI. In the past, electromagnetic shielding has been mainly the only criteria considered in electronic enclosure design. However, there are several structural and thermal requirements for selection of shielding materials which should also be taken into account. In this research work, three quantitative materials selection methods, i.e. Digital Logic (DL), Modified Digital Logic (MDL), and Z-transformation, are employed to select the best material from among a list of... 

    Phase diagram of hot magnetized two-flavor color-superconducting quark matter

    , Article Physical Review D - Particles, Fields, Gravitation and Cosmology ; Volume 83, Issue 2 , 2011 ; 15507998 (ISSN) Fayazbakhsh, S ; Sadooghi, N ; Sharif University of Technology
    2011
    Abstract
    A two-flavor color-superconducting Nambu-Jona-Lasinio model is introduced at finite temperature T, chemical potential μ, and in the presence of a constant magnetic field e∼B. The effect of (T,μ,e∼B) on the formation of chiral- and color-symmetry-breaking condensates is studied. The complete phase portrait of the model in T-μ, μ-e∼B, and T-e∼B phase spaces for various fixed e∼B, T, and μ is explored. A threshold magnetic field e∼Bt0.5GeV2 is found, above which the dynamics of the system are solely dominated by the lowest Landau level, and the effects of T and μ are partly compensated by e∼B  

    Weak decay constant of neutral pions in a hot and magnetized quark matter

    , Article Physical Review D - Particles, Fields, Gravitation and Cosmology ; Volume 88, Issue 6 , 2013 ; 15507998 (ISSN) Fayazbakhsh, Sh ; Sadooghi, N ; Sharif University of Technology
    2013
    Abstract
    The directional weak decay constants of neutral pions are determined at finite temperature T, chemical potential μ and in the presence of a constant magnetic field B. To do this, we first derive the energy dispersion relation of neutral pions from the corresponding effective action of a two-flavor, hot and magnetized Nambu–Jona-Lasinio model. Using this dispersion relation, including nontrivial directional refraction indices, we then generalize the partially conserved axial vector current relation of neutral pions and derive the Goldberger-Treiman as well as the Gell–Mann-Oakes-Renner relations consisting of the directional quark-pion coupling constant g(μ)qqπ0 and the weak decay constant... 

    Color neutral two-flavor superconducting phase of cold and dense quark matter in the presence of constant magnetic fields

    , Article Physical Review D - Particles, Fields, Gravitation and Cosmology ; Volume 82, Issue 4 , May , 2010 ; 15507998 (ISSN) Fayazbakhsh, Sh ; Sadooghi, N ; Sharif University of Technology
    2010
    Abstract
    The color neutral two-flavor superconducting phase of cold and dense quark matter is studied in the presence of constant magnetic fields and at moderate baryon densities. In the first part of the paper, a two-flavor effective Nambu-Jona-Lasinio model consisting of a chiral symmetry breaking (χSB) mass gap σB, a color superconducting (CSC) mass gap ΔB and a color chemical potential μ8 is introduced in the presence of a rotated U(1) magnetic field B. To study the phenomenon of magnetic catalysis in the presence of strong magnetic fields, the gap equations corresponding to σB and ΔB, as well as μ8 are solved in the lowest Landau level approximation. In the second part of the paper, a detailed... 

    Materials selection for applications in space environment considering outgassing phenomenon

    , Article Advances in Space Research ; Volume 45, Issue 6 , 2010 , Pages 741-749 ; 02731177 (ISSN) Fayazbakhsh, K ; Abedian, A ; Sharif University of Technology
    2010
    Abstract
    Application of the existing materials selection methods is not much popular in space environment. This is in spite of involvement of the selection process in this field with a wide range of influential factors (e.g. conventional mechanical properties and over 21 space environmental effects). In this paper an introductory road map for employing systematic materials selection methods in the field by engaging the selection process with mechanical properties and only one of the space environmental factors is presented. Here, selected case studies, which are involved with outgassing phenomenon of materials in vacuum condition, highlight the incapability of some of the methods in dealing with such... 

    Color Super Counductivity at Finite Temperature, Chemical Potential and in the Presence of Strong Magnetic Fields

    , Ph.D. Dissertation Sharif University of Technology Fayazbakhsh, Shima (Author) ; Sadooghi, Neda (Supervisor)
    Abstract
    In the present thesis, the effect of external magnetic fields on two-flavor Color Superconductive (2SC) phase, as one of the phases in the QCD phase diagram, is studied. To do this, an effective two-flavor Nambu-Jona Lasinio Lagrangian is used, which consists of two mass gaps, s = ?¯qq and ? = ? . The nonzero values of chiral and color mass these gaps induce spontaneous chiral and color symmetry breaking, and consequently two different phases. There is also a third phase, the normal phase, where s = ? = 0. We calculate the transition curves and the critical points in terms of three intensive quantities, the temperature, the chemical potential and the external magnetic field. We study, in... 

    Materials Selection in Space Application Regarding Space Environment with Introducing Novel Methods

    , M.Sc. Thesis Sharif University of Technology Fayazbakhsh, Kazem (Author) ; Abedian, Ali (Supervisor)
    Abstract
    Materials selection is an important stage in every mechanical or non-mechanical design. There are different methods for materials selection. Here, Digital Logic (DL) and Modified Digital Logic (MDL) methods are considered. Due to the shortcomings of these methods like requiring complicated functions etc., proposing a new method or modifying the existing methods was the main motivation behind the selected subject for the thesis. Particularly it is tried here to eliminate the existing shortcomings and simplifying the functions used for materials selection. The invented method is then applied to the existing and some new example problems. The areas of application of the so called... 

    Properties of neutral mesons in a hot and magnetized quark matter

    , Article Physical Review D - Particles, Fields, Gravitation and Cosmology ; Volume 86, Issue 8 , 2012 ; 15507998 (ISSN) Fayazbakhsh, S ; Sadeghian, S ; Sadooghi, N ; Sharif University of Technology
    APS  2012
    Abstract
    The properties of noninteracting σ and π0 mesons are studied at finite temperature, chemical potential, and in the presence of a constant magnetic field. To do this, the energy dispersion relations of these particles, including nontrivial form factors, are derived using a derivative expansion of the effective action of a two-flavor, hot and magnetized Nambu-Jona-Lasinio model up to second order. The temperature dependence of the pole and screening masses as well as the directional refraction indices of magnetized neutral mesons are explored for fixed magnetic fields and chemical potentials. It is shown that, because of the explicit breaking of the Lorentz invariance by the magnetic field,... 

    Cooperative supply chain management using a grid-based optimizer

    , Article Proceedings - 2010 IEEE 17th International Conference on Industrial Engineering and Engineering Management, IE and EM2010, 29 October 2010 through 31 October 2010 ; October , 2010 , Pages 1300-1305 ; 9781424464814 (ISBN) Sepehri, M ; Najmi, M ; Fayazbakhsh, K ; Sharif University of Technology
    2010
    Abstract
    A cooperative supply chain seeks to coordinate its members to produce and distribute products along the chain, for minimum overall costs to satisfy customer demand. An integrated multi-period, multiple product and multiple stage supply chain is formulated using a flow networks framework. A Cooperative Supply Chain Optimizer (CSCO), as a central software entity taking advantage of Grid technology, connects and gathers necessary operational information from members of the corporate supply chain. The CSCO then guides supply chain members on ordering decisions, for a minimum overall cost of the entire supply chain, while continuously re-directing the members as new data becomes available. The... 

    Supply chain coordination with flow networks

    , Article South African Journal of Business Management ; Volume 40, Issue 2 , 2009 , Pages 27-33 ; 03789098 (ISSN) Fayazbakhsh, K ; Sepehri, M ; Razzazi, M ; Sharif University of Technology
    2009
    Abstract
    A mechanism for supply chain coordination models the entire supply chain with multiple members in four stages to satisfy customer demand with minimum total costs. Previous coordination mechanisms research applied restrictive assumptions on the number in the supply chain stages and members in each stage, disallowing a case of multi-product. Flow networks concept is proposes as a coordination mechanism for supply chains with multiple members, multiple stages and multi-products, where each product is composed of several basic components. A supply chain optimizer (SCO), actually an e-hub, gathers supply chain state information. After necessary computations, it informs members of the supply chain... 

    Introducing a novel method for materials selection in mechanical design using Z-transformation in statistics for normalization of material properties

    , Article Materials and Design ; Volume 30, Issue 10 , 2009 , Pages 4396-4404 ; 02641275 (ISSN) Fayazbakhsh, K ; Abedian, A ; Manshadi, B. D ; Khabbaz, R. S ; Sharif University of Technology
    Elsevier  2009
    Abstract
    Optimum materials selection is a very important task in design process of every product. There are various materials selection methods like Ashby's method or digital logic methods such as DL and MDL. In the present research work the Z-transformation method is proposed for scaling the material properties to overcome the shortcoming of MDL method. The results show that despite the simple scaling function used, the ranking procedure is as powerful as MDL method and even it is superior to MDL when it ranks the less important materials existing among a list of candidate materials  

    Numerical Simulation of Compressible Magnetohydrodynamic Flow Using Spectral Difference Method on Quadrilateral Grids

    , M.Sc. Thesis Sharif University of Technology Kafian, Hesam (Author) ; Hejranfar, Kazem (Supervisor)
    Abstract
    In the present work, the numerical solution of 2D inviscid compressible Magneto-hydrodynamic flow is performed by using the spectral difference (SD) method on quadrilateral grids. In this numerical method, similar to the discontinuous Galerkin (DG) and spectral volume (SV) methods, the concept of the discontinuous and high-order local representations is used to achieve conservation property and high-order accuracy. In the SD method, the test function or the surface integral is not involved and thus it has a simpler formulation than the DG and SV methods. In this numerical method, two sets of structured points, namely unknown points and flux points, are defined in each cell to support the... 

    Numerical Solution of Two-dimensional Compressible Flow Using Immersed Boundary Method with Compact Finite Difference Scheme

    , M.Sc. Thesis Sharif University of Technology Mashayekh, Erfan (Author) ; Hejranfar, Kazem (Supervisor)
    Abstract
    In this study, the viscous compressible flow is simulated over two-dimensional geometries by using the immersed boundary method and applying a high-order accurate numerical scheme. A fourth-order compact finite-difference scheme is used to accurately discretize the spatial derivative terms of the governing equations and the time integration is performed by the fourth-order Runge–Kutta scheme. To regularize the numerical solution and eliminate spurious modes due to unresolved scales, nonlinearities and inaccuracies in implementing boundary conditions, high-order low-pass compact filters are applied. A uniform Cartesian grid that is not coincident with the body surface is used and the boundary... 

    Implementing Appropriate Numerical Filters in the Lattice Boltzmann Method for Solving Multiphase Incompressible Flows with Large Density Ratio

    , M.Sc. Thesis Sharif University of Technology Bidi, Saeed (Author) ; Hejranfar, Kazem (Supervisor)
    Abstract
    In this study, two finite-difference lattice Boltzmann methods (FDLBM) are applied and assessed for the simulation of two-phase liquid-vapor flows with high density ratios. For this aim, the He-Shan-Doolen type lattice Boltzmann multiphase model is used and the spatial derivatives in the resulting system of equations are discretized by using the second-order central difference and modified Lax-Wendroff schemes. Suitable numerical dissipation terms and filters are applied to regularize the numerical solution and remove spurious waves generated by flow nonlinearities in smooth regions and at the same time to remove the numerical oscillations in the interface region of the two phases.Three... 

    Synthesis and Study of Catalytic Activity of Iron (III)-bis(2-oxazolinyl) Methane complex by Urea Hydrogen Peroxide in Oxidation of Sulfides

    , M.Sc. Thesis Sharif University of Technology Kazem, Nasrin (Author) ; Bagherzadeh, Mojtaba (Supervisor)
    Abstract
    Considerable effort has been directed in recent years towards the transition metal complex catalyzed oxidation of organic compounds. Herein the synthsis of the iron complex of bis(oxazoline) ligand as a novel catalyst is reported, and the catalytic activity of this complex in oxidation of sulfides is investigated. Bis(2-oxazolynil)methane as ligand is prepared by condensation of diethylmalonate with 2-aminoethanole in 1:2 molar ratio and finally corresponding complex is synthesized by the reaction between FeCl3.6H2O and Bis(2-Oxazolynil)methane in 1:1 molar ratio. The complex is characterized by using IR, UV-Vis, cyclic voltametery, conductometery and elemental analysis data. Moreover,... 

    Development of Characteristic Boundary Conditions with Artificial Compressibility Method by Compact Finite-Difference Discretization

    , Ph.D. Dissertation Sharif University of Technology Parseh, Kaveh (Author) ; Hejranfar, Kazem (Supervisor)
    Abstract
    In the present study, the preconditioned incompressible Navier‐Stokes equations with the artificial compressibility (AC) method formulated in the generalized curvilinear coordinates are numerically solved by using a high‐order compact finite‐difference scheme for accurately and efficiently computing the incompressible flows. A fourth‐order compact finite‐difference scheme is utilized to discretize the spatial derivative terms of the resulting system of equations and the time integration is carried out based on the dual time‐stepping method. The capability of the proposed solution methodology for computing the steady and unsteady incompressible viscous flows in a wide range of Reynolds... 

    Numerical Simulation of Natural Convection Using Smoothed Particle Hydrodynamics with Artificial Compressibility Method

    , M.Sc. Thesis Sharif University of Technology Attari, Reza (Author) ; Hejranfar, Kazem (Supervisor)
    Abstract
    In this research, the numerical simulation of the natural convection is performed by using the smoothed particle hydrodynamics based on the artificial compressibility method. For this aim, the formulation of the artificial compressibility method in the Eulerian reference frame for the mass and momentum equations is written in the Lagragian reference frame and the Lagrangin form of the energy equation is also considered to compute the thermal effects. The benefit of the artificial compressibility-based incompressible SPH (ACISPH) method over the weakly compressible SPH (WCSPH) method for computing the natural convection is that there is no need in the formulation considered here to use any... 

    Numerical Simulation of 2D Compressible Cavitation Flow Using Compact Finite-Difference Method

    , M.Sc. Thesis Sharif University of Technology Irani, Mohammad (Author) ; Hejranfar, Kazem (Supervisor)
    Abstract
    In the present study, the numerical simulation of 2D inviscid compressible cavitation flow is performed by using the compact finite-difference method. The problem formulation is based on the multiphase compressible Euler equations with the assumption of the homogeneous equilibrium model and the system of baseline differential equations is comprised of the continuity, momentum and energy equations for the vapor-liquid mixture. To complete the system of governing equations, the ideal gas relation is used for the vapor phase and the Tait relation is applied for the liquid phase, and therefore, the compressibility effects are considered for both the vapor and liquid phases. To analyze the flow...