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    Microinjection moulding of 316L/17-4PH and 316L/Fe powders for fabrication of magnetic-nonmagnetic bimetals

    , Article Journal of Materials Processing Technology ; Volume 200, Issue 1-3 , 2008 , Pages 259-264 ; 09240136 (ISSN) Imgrund, Ph ; Rota, A ; Simchi, A ; Sharif University of Technology
    2008
    Abstract
    In the investigations presented here, the feasibility of producing magnetic-nonmagnetic bimetals made of 316L/17-4PH and 316L/Fe powders by micro-metal injection moulding process (μ-MIM) was studied. In order to achieve sound replication of small specimens with dimensions less than 1 mm, very fine powders with mean particle sizes in the range of 3-7 μm were used. A wax-polymer binder system specially designed for micro-moulding was used to make up the feedstock. The isothermal and non-isothermal sintering behaviour of the moulded components was evaluated under hydrogen atmosphere. The effect of powder-binder-ratio of the feedstock, master alloy addition, and sintering conditions on the... 

    Magnetization of bilayer graphene with interplay between monovacancy in each layer

    , Article Journal of Applied Physics ; Volume 114, Issue 8 , 2013 ; 00218979 (ISSN) Rostami, M ; Faez, R ; Rabiee Golgir, H ; Sharif University of Technology
    2013
    Abstract
    Effects of introducing two monovacancies in bilayer graphene are investigated by using spin-polarized density functional theory. Each layer of bilayer graphene has a monovacancy. Two different classifications are studied, namely, AA and AB. In AA category, vacancies in upper layer and lower layer are chosen from the same sublattices (A or B). However, in AB category, vacancies are selected from the different sublattices (A and B). Two different structures of every classification are examined in order to investigate the effects of two monovacancies on structural, electronic, and magnetic properties of bilayer graphene. Structural optimization reveals that introducing a monovacancy in every... 

    High quality factor RF inductors using low loss conductor featured with skin effect suppression for standard CMOS/BiCMOS

    , Article Proceedings - Electronic Components and Technology Conference, 31 May 2011 through 3 June 2011 ; June , 2011 , Pages 163-168 ; 05695503 (ISSN) ; 9781612844978 (ISBN) Iramnaaz, I ; Sandoval, T ; Zhuang, Y ; Schellevis, H ; Rejaei, B ; Sharif University of Technology
    2011
    Abstract
    Integrated on-chip inductors with high quality factors are demonstrated using a low loss artificial conductor technology. This concept is based on an artificial layered meta-material comprising a bi-layered Ni 80Fe 20/Cu superlattice. By properly tailoring the thickness ratio between the non-magnetic and magnetic metallic layers, the skin effects can be effectively suppressed within a wide frequency range, and can be tuned to a minimum at the frequency of interest up to 67 GHz. The quality factor has been increased by 41% of a 2nH inductor at 14.5GHz. The bandwidth of skin effect suppression is obtained between 10-18 GHz  

    FEM enhanced signal processing approach for pattern recognition in the SQUID based NDE system

    , Article Journal of Physics: Conference Series, 13 September 2009 through 17 September 2009 ; Volume 234, Issue PART 4 , 2010 ; 17426588 (ISSN) Sarreshtedari, F ; Jahed, N. M. S ; Hosseni, N ; Pourhashemi, A ; Banzet, M ; Schubert, J ; Fardmanesh, M ; Sharif University of Technology
    Abstract
    An efficient Non-Destructive Evaluation algorithm has been developed in order to extract the required information for pattern recognition of defects in the conductive samples. Using high-Tc gradiometer RF-SQUIDs in unshielded environments and incorporating an automated two dimensional non-magnetic scanning robot, samples with different intentional defects have been tested. We have used a developed noise cancellation approach for the improvement of the effectiveness of the used inverse-problem technique. In this approach we have used a well examined Finite Element Method (FEM) to apply a noise reduction filtering on the obtained raw magnetic image data before incorporating the signal... 

    Structural, magnetic, and optical properties of zinc-and copper-substituted nickel ferrite nanocrystals

    , Article Journal of Superconductivity and Novel Magnetism ; Volume 25, Issue 7 , 2012 , Pages 2443-2455 ; 15571939 (ISSN) Tehrani, F. S ; Daadmehr, V ; Rezakhani, A. T ; Akbarnejad, R. H ; Gholipour, S ; Sharif University of Technology
    Springer  2012
    Abstract
    Ferrite nanocrystals are an interesting material due to their rich physical properties. Here we add nonmagnetic dopants Zn and Cu to nickel ferrite nanocrystals, Ni1-xMxFe2O4 (0 ≤ x ≤ 1, M = Cu, Zn), and study how relevant properties of the samples are modified accordingly. Basically, these dopings cause a rearrangement of Fe +3 ions into the two preexisting octahedral and tetrahedral sites. In fact, this, we show, induces pertinent magnetic properties of the doped samples. In the case of the Cu-doping, the Jahn-Teller effect also emerges, which we identify through the Fourier Transform Infra-Red Spectroscopy of the samples. Moreover, we show an increase in the lattice parameters of the... 

    Electronic structure of Ni-doped BaFe2−xNixAs2 (x = 0, 1, 2) superconductor in the nonmagnetic and magnetic states

    , Article Journal of Superconductivity and Novel Magnetism ; Volume 28, Issue 8 , 2015 , Pages 2365-2371 ; 15571939 (ISSN) Inanloo, Z ; Khosroabadi, H ; Abolhassani, M. R ; Sharif University of Technology
    Springer New York LLC  2015
    Abstract
    The spin configuration, equilibrium crystal structure, and electronic structure of BaFe2−xNixAs2 (x = 0, 1, 2) have been investigated by using ab initio pseudopotential Quantum Espresso code in the generalized gradient approximation. The total energy of different Fe(Ni) spin configurations has been calculated to determine the ground state in each doping. The results show an antiferromagnetic order in x = 0.0 and a nonmagnetic state for x = 2.0. Equilibrium lattice and internal parameters for this system have been calculated and compared with the literature data. This study shows that the lattice parameters in the magnetic calculations have been... 

    A density functional study of strong local magnetism creation on MoS 2 nanoribbon by sulfur vacancy

    , Article Nanoscale ; Volume 2, Issue 8 , 2010 , Pages 1429-1435 ; 20403364 (ISSN) Shidpour, R ; Manteghian, M ; Sharif University of Technology
    2010
    Abstract
    In this study a low-width MoS2 ribbon has been used for probing the electronic structure and local magnetic moment near vacancies. A theoretical study with the full-potential Density Functional Theory (DFT) approach (Wien2K code) have shown that when the dimension of MoS2 is reduced from 2-D to 1-D the nonmagnetic semi-conductor MoS2 becomes a magnetic conductor. Our study has shown that a vacancy on the S-edge with 50% coverage intensifies the magnetization of the edge of the MoS2 nanoribbon but such a vacancy on S-edge with 100% coverage causes this magnetic property to disappear. It is concluded that in both of them, there are positive or negative strong gradients of local magnetic moment...