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Total 22 records

    Ultrabroadband power amplifier using 16-way spatial combining finline array

    , Article Microwave and Optical Technology Letters ; Volume 55, Issue 2 , 2013 , Pages 454-460 ; 08952477 (ISSN) Hosseini, S. E ; Banai, A ; Sharif University of Technology
    2013
    Abstract
    An ultrabroadband power amplifier using 16-way spatial power divider/combiner that using a quasi-TEM-guided wave structure is designed. An oversized coaxial waveguide was used as the host of the dividing/combining circuits that incorporates an antipodal finline array. Galerkin's technique in the spectral domain was used to analyze the antipodal finline. The oversized TEM-guided wave structure and antipodal transitions were designed using the theory of small reflection and near optimum design. A high power amplifier using 16 monolithic-microwave integrated-circuit power amplifiers is built. The measured results show 160% bandwidth impedance match covering the entire 2-18 GHz with maximum... 

    An efficient optimization problem for modal reflectivity at optical waveguide end-facet based on the formulation of characteristic green’s function technique

    , Article 4th International Conference on Photonics, Optics and Laser Technology, PHOTOPTICS 2015, 12 March 2015 through 14 March 2015 ; Volume 181 , 2016 , Pages 105-117 ; 09308989 (ISSN); 9783319301358 (ISBN) Torabi, A ; Shishegar, A. A ; IEEE Photonics Society and Photonics21 ; Sharif University of Technology
    Springer Science and Business Media, LLC  2016
    Abstract
    A novel method to compute guided mode reflectivity from optical waveguide end-facet is presented in this paper. First, rational function fitting method (RFFM) is applied in characteristic Green’s function (CGF) technique to find an approximate closed-form analytic expression for spatial Green’s function of abruptly truncated slab waveguide. Then, derived closed-form relation along with the exact results of spatial Green’s function, obtained by full wave solution, are incorporated in an efficient optimization problem. The fast Newton reflective method with trust region algorithm are utilized for optimized reflection coefficients of guided modes. The main advantage of the proposed CGF-RFFM... 

    A new resonance in a circular waveguide cavity assisted by anisotropic metasurfaces

    , Article IEEE MTT-S International Microwave Symposium Digest, 4 June 2017 through 9 June 2017 ; 2017 , Pages 1801-1803 ; 0149645X (ISSN) ; 9781509063604 (ISBN) Li, X ; Memarian, M ; Itoh, T ; Sharif University of Technology
    Abstract
    A new resonance phenomenon is discussed and demonstrated by experiment in a dual-polarization cavity. The resonance is formed by waves bouncing between two anisotropic metasurfaces placed at the cavity ends. The simple metasurfaces are designed to preserve the handedness of circularly polarized waves upon reflection. The standing waves resulting from such reflections do not have nodes and antinodes. A theoretical solution to the resonance condition is discussed, both for plane-waves and equivalent guided waves. The concept is then experimentally applied to dual-mode guided waves, demonstrating a very short cavity at X-band. This brings new possibilities for resonator design and can... 

    Tunable leaky-wave radiation by graphenecovered corrugated surfaces

    , Article Applied Optics ; Volume 57, Issue 30 , 2018 , Pages 8971-8977 ; 1559128X (ISSN) Tavakol, M. R ; Saba, A ; Arik, K ; Khavasi, A ; Sharif University of Technology
    OSA - The Optical Society  2018
    Abstract
    we propose a graphene-covered subwavelength metallic grating where the Fermi level of graphene is sinusoidally modulated as a leaky-wave antenna at terahertz frequencies. This structure can convert spoof surface plasmon guided waves to free-space radiation due to the tunability of graphene. Analysis and design of the proposed leaky-wave antenna are discussed based on sinusoidally modulated surface impedance. The surface impedance is obtained by an analytical circuit model. The sinusoidal surface impedance is realized using modulation of the conductivity of graphene by applying a bias voltage. The proposed leaky-wave antenna is capable of electronic beam scanning with an almost constant gain... 

    Two-dimensional edge detection by guided mode resonant metasurface

    , Article IEEE Photonics Technology Letters ; Volume 30, Issue 9 , 1 May , 2018 , Pages 853-856 ; 10411135 (ISSN) Saba, A ; Tavakol, M. R ; Karimi Khoozani, P ; Khavasi, A ; Sharif University of Technology
    Institute of Electrical and Electronics Engineers Inc  2018
    Abstract
    In this letter, a new approach to perform edge detection is presented using an all-dielectric complimentary metal-oxide-semiconductor-compatible metasurface. Our design is based on the guided-mode resonance, which provides a high quality factor resonance to make the edge detection experimentally realizable. The proposed structure is easy to fabricate, and it can be exploited for detection of edges in two dimensions due to its symmetry. In addition, a tradeoff between gain and the resolution of edge detection is discussed, which can be adjusted using appropriate design parameters. The proposed edge detector potentially can be used in ultrafast analog computing and image processing. ©... 

    Use of delay and sum for sparse reconstruction improvement for structural health monitoring

    , Article Journal of Intelligent Material Systems and Structures ; Volume 30, Issue 18-19 , 2019 , Pages 2919-2931 ; 1045389X (ISSN) Nokhbatolfoghahai, A ; Navazi, H. M ; Groves, R. M ; Sharif University of Technology
    SAGE Publications Ltd  2019
    Abstract
    To perform active structural health monitoring, guided Lamb waves for damage detection have recently gained extensive attention. Many algorithms are used for damage detection with guided waves and among them, the delay-and-sum method is the most commonly used algorithm because of its robustness and simplicity. However, delay-and-sum images tend to have poor accuracy with a large spot size and a high noise floor, especially in the presence of multiple damages. To overcome these problems, another method that is based on sparse reconstruction can be used. Although the images produced by the sparse reconstruction method are superior to the conventional delay-and-sum method, it has the challenges... 

    Achieving subwavelength field confinement in sub-terahertz regime by periodic metallodielectric waveguides

    , Article Optics Express ; Volume 27, Issue 4 , 2019 , Pages 4226-4237 ; 10944087 (ISSN) Tehranian, A ; Ahmadi Boroujeni, M ; Abbaszadeh, A ; Sharif University of Technology
    OSA - The Optical Society  2019
    Abstract
    In this paper, we report on a periodic metallo-dielectric structure that supports geometry-induced surface plasmons in the sub-terahertz regime. The proposed structure is made up of a dielectric-coated metallic grating sandwiched by parallel metal plates. Based on the modal analysis of 2D and 3D structures, the impact of a metal cladding and a customized dielectric coating on the dispersion relation and field distribution of the guided surface wave is investigated. It is found that modal field confinement is improved in the presence of a metal cladding without narrowing the operational bandwidth of the waveguide. Moreover, a customized subwavelength-sized dielectric coating based on... 

    Achieving subwavelength field confinement in sub-terahertz regime by periodic metallodielectric waveguides

    , Article Optics Express ; Volume 27, Issue 4 , 2019 , Pages 4226-4237 ; 10944087 (ISSN) Tehranian, A ; Ahmadi Boroujeni, M ; Abbaszadeh, A ; Sharif University of Technology
    OSA - The Optical Society  2019
    Abstract
    In this paper, we report on a periodic metallo-dielectric structure that supports geometry-induced surface plasmons in the sub-terahertz regime. The proposed structure is made up of a dielectric-coated metallic grating sandwiched by parallel metal plates. Based on the modal analysis of 2D and 3D structures, the impact of a metal cladding and a customized dielectric coating on the dispersion relation and field distribution of the guided surface wave is investigated. It is found that modal field confinement is improved in the presence of a metal cladding without narrowing the operational bandwidth of the waveguide. Moreover, a customized subwavelength-sized dielectric coating based on... 

    An efficient approach toward guided mode extraction in two-dimensional photonic crystals

    , Article Optics Communications ; Volume 281, Issue 10 , 2008 , Pages 2826-2833 ; 00304018 (ISSN) Sarrafi, P ; Naqavi, A ; Mehrany, K ; Khorasani, S ; Rashidian, B ; Sharif University of Technology
    2008
    Abstract
    A rigorous, fast and efficient method is proposed for analytical extraction of guided defect modes in two-dimensional photonic crystals, where each Bloch spatial harmonic is expanded in terms of Hermite-Gauss functions. This expansion, after being substituted in Maxwell's equations, is analytically projected in the Hilbert space spanned by the Hermite-Gauss basis functions, and then a new set of first order coupled linear ordinary differential equations with non-constant coefficients is obtained. This set of equations is solved by employing successive differential transfer matrices, whereupon defect modes, i.e. the guided modes propagating in the straight line-defect photonic crystal... 

    Analysis and simulation of ring resonator silicon electro-optic modulators based on PN junction in reverse bias

    , Article Optical Engineering ; Vol. 53, issue. 12 , 2014 ; ISSN: 00913286 Jafari, O ; Akbari, M ; Sharif University of Technology
    Abstract
    The theory of silicon optical modulators of ring resonators based on PN diode in reverse bias is primarily discussed. It secondarily provides a full-featured simulator to investigate the behavior of such modulators. Wave equation for ring structure will be solved by using the conformal transformation method and the matrix method as it was used to analyze bent planar optical waveguides. Power coupling between ring and straight waveguides will be calculated by coupled theory of nonparallel waveguides based on experimental results. The time response demonstrates the capability of this device to operate correctly at up to 10 Gbs-1 bitrate, and the frequency spectrum analysis of device shows a >... 

    Fatigue damage detection in large thin wall plate based on ultrasonic guided wave by using a piezoelectric sensor network

    , Article 29th Congress of the International Council of the Aeronautical Sciences, ICAS 2014 ; 2014 Alem, B ; Abedian, A ; Sharif University of Technology
    Abstract
    Today, structural Health monitoring is a major concern in the engineering community. Multisite fatigue damage, hidden cracks and corrosion in hard-to-reach locations are among the major flaws encountered in today's extensive diagnosis and/or prognosis of aircraft structures. Ultrasonic waves, lamb waves are particularly advantageous because of their propagation at large distances with little damp in thin-wall structures. In this paper a new rectangular shape array of embedded piezoelectric sensors is developed to detect some damages in large planar structures. An artificial neural network is trained to identify the damage state and its location. Output signals of each sensor due to various... 

    Millimeter-wave artificial dielectric waveguides for integrated applications

    , Article IEEE MTT-S International Microwave and RF Conference 2014, IMaRC 2014 - Collocated with Intemational Symposium on Microwaves, ISM 2014, 15 December 2014 through 17 December 2014 ; 2015 , Pages 225-228 ; 9781479963164 (ISBN) Barzegar Parizi, S ; Rejaei, B ; Sharif University of Technology
    Institute of Electrical and Electronics Engineers Inc  2015
    Abstract
    High-quality guided wave devices are key components in integrated millimeter-wave circuits. In this paper, we propose mm-wave planar dielectric waveguides based on thin, anisotropic artificial dielectric layers with very high in-plane permittivity. Waves propagating on such films are surface waves whose field exponentially decays outside the film in the vertical direction, similar to waveguides commonly used in integrated optics. The very high in-plane permittivity of the artificial dielectric layers leads to strong field confinement, and allows the implementation of relatively thin waveguides. This fact, together with the planar structure of these devices, make them highly suitable for... 

    A transmission line model for extraction of defect modes in two-dimensional photonic crystals

    , Article 2010 International Conference on Photonics, ICP2010, 5 July 2010 through 7 July 2010 ; July , 2010 ; 9781424471874 (ISBN) Khavasi, A ; Habibi, N ; Hosseinnia, A. H ; Mehrany, K ; Sharif University of Technology
    2010
    Abstract
    A transmission line model, based on the transverse resonance technique, is here introduced to extract a good approximation of guided defect modes in two dimensional photonic crystals. The proposed model simulates the electromagnetic field behavior in the transverse direction. Applying the resonance condition to the proposed circuit model renders a simple and elegant dispersion relation for defect modes in the structure. The obtained results are verified by being compared against numerical results extracted by using rigorous methods  

    Coupled plasmonic quantum bits

    , Article Proceedings of SPIE - The International Society for Optical Engineering, 24 January 2010 through 28 January 2010 ; Volume 7608 , January , 2010 ; 0277786X (ISSN) ; 9780819480040 (ISBN) Eftekharian, A ; Sodagar, M ; Khoshnegar, M ; Khorasani, S ; Adibi, A ; Sharif University of Technology
    2010
    Abstract
    In this paper we introduce a coupled system of two quantum bits residing at the interface of a heterostructure device. The structure encompasses a reference quantum bit, a photonic/plasmonic crystal waveguide and an obedient quantum bit. Each quantum bit is an electronic device which is designed based on an anti-dot lattice of two-dimensional electron gas in heterostructures. By applying a potential gate in the aforementioned structure it is possible to control electronic tunneling rate and hence quantum bits' swapping frequency. Coupling through the plasmonic waveguide may be employed to entangle quantum bits. The waveguide has been designed by exploiting conducting islands of... 

    Inastantaneous baseline multiple damage detection and localization in an aluminum plate using Lamb waves

    , Article 30th Congress of the International Council of the Aeronautical Sciences, 25 September 2016 through 30 September 2016 ; 2016 ; 9783932182853 (ISBN) Alem, B ; Abedian, A ; Nasiri, M ; Sharif University of Technology
    International Council of the Aeronautical Sciences 
    Abstract
    In recent years, new Structural Health Monitoring (SHM) methodologies with a concept of "instantaneous baseline damage detection" are being developed by many researchers. In this context, this paper uses a new method to identify multiple damage in the aluminum plate. For this goal use from spars PZWS sensor network to generate and received guided waves. Ultrasonic waves are generated and measured from all possible different pairs of excitation and sensing transducers. For feature extraction of received signals used from continues wavelet transform. A probabilistic damage diagnostic algorithm based on correlation analysis was investigated to locate single or multiple damages. In this study,... 

    Guided mode extraction in monolayer colloidal crystals based on the phase variation of reflection and transmission coefficients

    , Article Optics Communications ; Volume 364 , 2016 , Pages 44-49 ; 00304018 (ISSN) Nekuee, S. A. H ; Akbari, M ; Khavasi, A ; Sharif University of Technology
    Elsevier 
    Abstract
    An accurate and fast method for guided modes extraction in monolayer colloidal crystals and their inverse replicas is presented. These three-dimensional structures are composed of a monolayer of spherical particles that can easily and simply be prepared by self-assembly method in close packed hexagonal lattices. In this work, we describe how the guided modes, even or odd modes and light cone boundary can be easily determined using phase variations of reflection and transmission coefficients. These coefficients are quickly calculated by Fourier modal method. The band structures are obtained for a monolayer of polystyrene particles and two-dimensional TiO2 inverse opal by this proposed method  

    Optimization and simulation of micrometre-scale ring resonator modulators based on p-i-n diodes using firefly algorithm

    , Article Optik ; Volume 128 , 2017 , Pages 101-112 ; 00304026 (ISSN) Jafari, O ; Akbari, M ; Sharif University of Technology
    Elsevier GmbH  2017
    Abstract
    Field analysis of ring resonator modulators based on p-i-n diodes has been dissected in this paper. This analysis is performed in time and frequency domains. The conformal transformation method has been used for solving 3-D wave equation. Coupling coefficient between the ring and straight waveguides are obtained by developing the coupled-mode assumption. In the resonant wavelength of 1573.91 nm, a drop of more than 15 dB in frequency spectrum of the device has been observed. Time domain simulation shows that this modulator could support up to 0.4 Gb/s and up to 1.5 Gb/s for NRZ and RZ signals, respectively. Obtained simulation results in both domains have been properly complied with... 

    Wideband and narrowband circuit models for fano-shape guided-mode resonance

    , Article IEEE Journal of Quantum Electronics ; Volume 55, Issue 3 , 2019 ; 00189197 (ISSN) Saba, A ; Memarian, M ; Mehrany, K ; Sharif University of Technology
    Institute of Electrical and Electronics Engineers Inc  2019
    Abstract
    In this paper, we propose two different types of circuit models for Fano-shape guided-mode resonance (GMR) in waveguide gratings. Both the models constitute a resonant tank circuit together with a direct non-resonant channel between the incident and scattered light. One neglects the frequency dependence of the direct non-resonant channel and is only more accurate in the immediate vicinity of the Fano-type resonance. The other accounts for the frequency dependence of the direct non-resonant channel and thus remains accurate within a wider range of frequencies. The former being referred to as the narrow-band model is extremely accurate, insofar as the isolated GMR is of interest within a... 

    Wide-and narrow-band circuit models for fano-shape guided mode resonance

    , Article IEEE Journal of Quantum Electronics ; 2019 ; 00189197 (ISSN) Saba, A ; Memarian, M ; Mehrany, K ; Sharif University of Technology
    Institute of Electrical and Electronics Engineers Inc  2019
    Abstract
    In this paper, we propose two different types of circuit models for Fano-shape guided mode resonance (GMR) in waveguide gratings. Both models constitute a resonant tank circuit together with a direct non-resonant channel between the incident and the scattered light. One neglects the frequency dependence of the direct non-resonant channel and is only more accurate in the immediate vicinity of the Fano type resonance. The other accounts for the frequency dependence of the direct non-resonant channel and thus remains accurate within a wider range of frequencies. The former being referred to as the narrow-band model is extremely accurate insofar as the isolated GMR is of interest within a narrow... 

    Wide-and narrow-band circuit models for fano-shape guided mode resonance

    , Article IEEE Journal of Quantum Electronics ; 2019 ; 00189197 (ISSN) Saba, A ; Memarian, M ; Mehrany, K ; Sharif University of Technology
    Institute of Electrical and Electronics Engineers Inc  2019
    Abstract
    In this paper, we propose two different types of circuit models for Fano-shape guided mode resonance (GMR) in waveguide gratings. Both models constitute a resonant tank circuit together with a direct non-resonant channel between the incident and the scattered light. One neglects the frequency dependence of the direct non-resonant channel and is only more accurate in the immediate vicinity of the Fano type resonance. The other accounts for the frequency dependence of the direct non-resonant channel and thus remains accurate within a wider range of frequencies. The former being referred to as the narrow-band model is extremely accurate insofar as the isolated GMR is of interest within a narrow...