Loading...
Search for:
memarian--m
0.141 seconds
Total 21506 records
All-optical multi-wavelength-channel ReLU activation function
, Article Optics Express ; Volume 32, Issue 22 , 2024 , Pages 39160-39176 ; 10944087 (ISSN) ; Mehrany, K ; Memarian, M ; Sharif University of Technology
2024
Abstract
Optical neural networks (ONNs) are custom optical circuits promising a breakthrough in low-power, parallelized, and high-speed hardware, for the growing demands of artificial intelligence applications. All-optical implementation of ONNs has proven burdensome chiefly due to the lack of optical devices that can emulate the neurons’ non-linear activation function, thus forcing hybrid optical-electronic implementations. Moreover, ONNs suffer from a large footprint in comparison to their electronic (CMOS-based) counterparts. Utilizing virtual optical neurons in time or frequency domain can reduce the number of required physical neurons, but an all-optical activation function is still required,...
General solution to wave propagation in media undergoing arbitrary transient or periodic temporal variations of permittivity
, Article Journal of the Optical Society of America B: Optical Physics ; Volume 35, Issue 11 , 2018 , Pages 29232932- ; 07403224 (ISSN) ; Mehrany, K ; Memarian, M ; Sharif University of Technology
OSA - The Optical Society
2018
Abstract
A novel and general formulation for wave propagation in time-varying media is presented. Unlike previousreports, our formalism is able to solve propagation in media with arbitrary time variations of permittivity orpermeability, for both transient and steady-state periodic variations. The formulation is approximate yet strikingly accurate in most practical cases. The provided closed-form expressions show that the normalized averagepower after the transition of the permittivity does not depend on the details of the transition, while the energydensity does. Some important discussions are made about time-periodic media, and it is shown that there is anaccumulation of energy when the temporal...
Frequency conversion and parametric amplification using a virtually rotating metasurface
, Article Optics Express ; Volume 28, Issue 5 , 2020 , Pages 6378-6394 ; 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...
fTemporal green's dunction of an RLC resonator with arbitrary time-varying capacitance using differential transition matrix
, Article Iranian Conference on Electrical Engineering, ICEE ; Issue 2024 , 2024 ; 21647054 (ISSN) ; Mehrany, K ; Memarian, M ; Sharif University of Technology
IEEE
2024
Abstract
Time-varying electromagnetic structures and circuits have gained unprecedented research attention in the past decade enabling new phenomena with important applications. The different scenarios share a common ground, the effect of time-varying resonances. In this paper an analytical time-domain Green's function for a simple RLC circuit with an arbitrary time-varying capacitance is presented. The idea of the proposed method is to substitute the rapidly varying amplitudes of capacitor charge or inductor current with two slowly varying equivalent amplitudes, reminiscing the WKB approach but with time-varying amplitudes. This differential transition matrix method based formalism is general for...
Quality improvement of millimeter-wave imaging systems using optimized dual polarized arrays
, Article IEEE Transactions on Antennas and Propagation ; Volume 69, Issue 10 , 2021 , Pages 6848-6856 ; 0018926X (ISSN) ; Zamani, H ; Fakharzadeh, M ; Memarian, M ; Sharif University of Technology
Institute of Electrical and Electronics Engineers Inc
2021
Abstract
In this article, we propose a software-hardware system to improve the quality of image recovery in millimeter-wave (MMW) imaging systems, which aims to benefit from copolarization and cross-polarization scatterings from the target. The proposed dual-polarized antenna array structures consist of two orthogonal subarrays with the same phase center, where each subarray is comprised of 2 imes 1 or 4 imes 1 rectangular edge fed patches and the optimized ground defects. These compact structures, which support radiation of two orthogonal linear polarizations, are designed on a single-layer board using crossover technique. The dual-polarized scattering from the target is captured by the orthogonal...
Local excitation of a perfectly conducting slab with finite or infinite number of slits and the role of proper complex waves
, Article IEEE Transactions on Antennas and Propagation ; Volume 68, Issue 8 , 2020 , Pages 6154-6161 ; Rejaei, B ; Memarian, M ; Sharif University of Technology
Institute of Electrical and Electronics Engineers Inc
2020
Abstract
The physics and modes of radiation in structures exhibiting extraordinary transmission (ET) can be best studied using Green's function formalism. In this article, we find the electromagnetic response to local excitation of a canonical structure exhibiting ET, and investigate the role of complex waves. The structure is a perfectly conducting slab having a finite or infinite number of through-slits. The solution breaks up the field into even and odd modes, and solves for the fields of the structure with a finite number of slits, by setting up an integral equation. The solution is then extended to find Greens' function of the infinitely periodic structure. The dispersion relations of the...
Analytical and rigorous method for analysis of an array of magnetically-biased graphene ribbons
, Article Optics Express ; Volume 27, Issue 20 , 2019 ; 10944087 (ISSN) ; Rejaei, B ; Memarian, M ; Khavasi, A ; Sharif University of Technology
OSA - The Optical Society
2019
Abstract
A sheet of graphene under magnetic bias attains anisotropic surface conductivity, opening the door for realizing compact devices such as Faraday rotators, isolators and circulators. In this paper, an accurate and analytical method is proposed for a periodic array of graphene ribbons under magnetic bias. The method is based on integral equations governing the induced surface currents on the coplanar array of graphene ribbons. For subwavelength size ribbons subjected to an incident plane wave, the current distribution is derived leading to analytical expressions for the reflection/transmission coefficients. The results obtained are in excellent agreement with full-wave simulations and predict...
Optical isolation enabled by two time-modulated point perturbations in a ring resonator
, Article Optics Express ; Volume 28, Issue 11 , 2020 , Pages 16805-16821 ; Mehrany, K ; Memarian, M ; Heydarian, H ; Sharif University of Technology
OSA - The Optical Society
2020
Abstract
In this paper we achieve non-reciprocity in a silicon optical ring resonator, by introducing two small time-modulated perturbations into the ring. Isolators are designed using this time-perturbed ring, side-coupled to waveguides. The underlying operation of the time-modulated ring and isolator is analyzed using Temporal Coupled Mode Theory (TCMT). The TCMT is used to find the angular distance, phase difference and thickness of the two time-modulated points on the ring resonator and also to find and justify the optimum values for the modulation frequency and amplitude, which yields maximum isolation in the isolator arrangements. Insight into the major players that determine isolation are also...
Frequency conversion in time-varying graphene microribbon arrays
, Article Optics Express ; Volume 30, Issue 18 , 2022 , Pages 32061-32073 ; 10944087 (ISSN) ; Rahmatian, P ; Memarian, M ; Mehrany, K ; Sharif University of Technology
Optica Publishing Group (formerly OSA)
2022
Abstract
We investigate the possibility of frequency conversion in time-varying metasurfaces, composed of graphene microribbon arrays (GMRAs) with time-periodic modulation of their conductivity. We present a quasi-static model for the interaction of light with a temporally modulated metasurface, as well as an accurate analytical treatment of the problem of time-varying GMRAs. Results coming from numerical simulations are also available. We provide corrections to a previous related proposal for frequency conversion and refute the possibility of attaining frequency shifts not equal to an integral multiple of modulation frequency. Contrary to the preceding results, our findings show that efficient...
Design guidelines for a tunable SOI based optical isolator in a partially time-modulated ring resonator
, Article IEEE Photonics Journal ; Volume 14, Issue 5 , 2022 ; 19430655 (ISSN) ; Mehrany, K ; Memarian, M ; Jamshidi, K ; Sharif University of Technology
Institute of Electrical and Electronics Engineers Inc
2022
Abstract
In this paper, we present the design guidelines for a tunable optical isolator in an SOI-based ring resonator with two small time-modulated regions. By considering a physical model, the proper geometrical and modulation parameters are designed, based on a standard CMOS foundry process. The effect of the variation of the key parameters on the performance of the isolator is explained by two counter-acting mechanisms, namely the separation between the resonance frequencies of counter-rotating modes and energy transfer to the side harmonic. We show that there is a trade-off between these parameters to obtain maximum isolation. Consequently, by applying the quadrature phase difference one can...
Virtual reservoir computer using an optical resonator
, Article Optical Materials Express ; Volume 12, Issue 3 , 2022 , Pages 1140-1153 ; 21593930 (ISSN) ; Jabbari, A ; Mehrany, K ; Memarian, M ; Sharif University of Technology
The Optical Society
2022
Abstract
Reservoir computing is a machine learning approach that enables us to use recurrent neural networks without involving the complexity of training algorithms and make hardware implementation possible. We present a novel photonic architecture of a reservoir computer that employs a nonlinear node and a resonator to implement a virtual recurrent neural network. This resonator behaves as an echo generator component that substitutes the delay line in delaybased reservoir computers available in the literature. The virtual neural network formed in our implementation is fundamentally different from the delay-based reservoir computers. Different virtual architectures based on the FSR and the Finesse of...
Wide-band/angle blazed dual mode metallic groove gratings
, Article IEEE Transactions on Antennas and Propagation ; 16 June , 2020 ; Abbassi, M. A ; Rahmani, B ; Memarian, M ; Mehrany, K ; Sharif University of Technology
Institute of Electrical and Electronics Engineers Inc
2020
Abstract
A simple approach to acquire wide-band/angle blazing operation in one-dimensional metallic gratings is investigated by means of mode-matching and equivalent circuit analysis. The gratings are single-groove perfectly conducting gratings that support two propagating guided modes (opposed to typical single mode cases). It is shown under what conditions, one can achieve blazing over a wide range of frequencies and angles. Most importantly, it is identified what governs blazing, in particular the true matching condition that needs to be satisfied, and how the structures’ multiple resonances play role in achieving such matching and tailoring the bandwidth. Parameters of the proposed equivalent...
Wide-band/angle blazed dual-mode metallic groove gratings
, Article IEEE Transactions on Antennas and Propagation ; Volume 69, Issue 1 , 2021 , Pages 379-386 ; 0018926X (ISSN) ; Abbassi, M. A ; Rahmani, B ; Memarian, M ; Mehrany, K ; Sharif University of Technology
Institute of Electrical and Electronics Engineers Inc
2021
Abstract
A simple approach to acquire wide-band/angle blazing operation in 1-D metallic gratings is investigated by means of mode-matching and equivalent circuit analysis. The gratings are single-groove perfectly conducting gratings that support two propagating guided modes (opposed to typical single-mode cases). It is shown under what conditions one can achieve blazing over a wide range of frequencies and angles. Most importantly, it is identified what governs blazing, in particular the true matching condition that needs to be satisfied, and how the structures' multiple resonances play role in achieving such matching and tailoring the bandwidth. Parameters of the proposed equivalent circuit model...
Variational-based approach to investigate Fano resonant plasmonic metasurfaces
, Article Optics Express ; Volume 31, Issue 10 , 2023 , Pages 16645-16658 ; 10944087 (ISSN) ; Masihi, A ; Mohammadi, M ; Ahmadi, H ; Memarian, M ; Sharif University of Technology
Optica Publishing Group (formerly OSA)
2023
Abstract
Considering the widespread applications of resonant phenomena in metasurfaces to bend, slow, concentrate, guide and manipulate lights, it is important to gain deep analytical insight into different types of resonances. Fano resonance and its special case electromagnetically induced transparency (EIT) which are realized in coupled resonators, have been the subject of many studies due to their high-quality factor and strong field confinement. In this paper, an efficient approach based on Floquet modal expansion is presented to accurately predict the electromagnetic response of two-dimensional/one-dimensional Fano resonant plasmonic metasurfaces. Unlike the previously reported methods, this...
Investigating non-reciprocity in time-periodic media using a perturbative approach
, Article Optics Express ; Volume 31, Issue 8 , 2023 , Pages 12534-12548 ; 10944087 (ISSN) ; Boshgazi, S ; Memarian, M ; Rejaei, B ; Mehrany, K ; Sharif University of Technology
Optica Publishing Group (formerly OSA)
2023
Abstract
Lorentz famous theorem leads to clear reciprocity conditions for linear, time-invariant media based on their constitutive parameters. By contrast, reciprocity conditions for linear time-varying media are not fully explored. In this paper, we investigate whether, and how a structure containing a time-periodic medium can be truly identified as reciprocal or not. To that end, a necessary and sufficient condition is derived which requires both the constitutive parameters and the electromagnetic fields inside the dynamic structure. As solving for the fields for such problems is challenging, a perturbative approach is proposed which expresses the aforementioned non-reciprocity condition in terms...
Variation Trend Analysis of Groundwater Depth with Wavelet Neural Network, and Detection of Relationship Between Climate Variability and Groundwater Variation Depth with Wavelet Analysis (Ghorveh-Dehgolan plain)
, M.Sc. Thesis Sharif University of Technology ; Abrishamchi, Ahmad (Supervisor)
Abstract
Over time, human needs more groundwater to meet agricultural, industrial, and urban uses; so the study on factor affecting groundwater and groundwater level changes are important for water resource management. However, often forgotten is the fact that accurate and reliable predictions are based on a correct diagnose of the past. One of the questions here is how the climate has changed since the last. Such a question is largely related to detection. Purpose of detecting climate variability and climate change, identifying climate variability and trends in system and describe the factors causing these changes are. Without knowing and understanding these changes and fluctuations, we are not able...
Design and Analysis of Microwave Frequency-Reconfigurable Antennas Based on Handedness Preserving Metasurfaces
, M.Sc. Thesis Sharif University of Technology ; Memarian, Mohammad (Supervisor)
Abstract
In the last two decades, reconfigurable antennas have attracted significant research attention. Utilization of such antennas can lead to decrease in cost and power consumption in modern communication systems. The main focus of efforts is on frequency reconfigurability using different mechanisms while maintaining desirable antenna characteristics over the tuning range. In this thesis, our goal is to design, analyze and fabricate a reconfigurable antenna based on the concept of polarization standing wave (PSW) in the X band using only a simple physical tuning mechanism. Two anisotropic handedness preserving mirrors (AHPM) are placed at both ends of a cylindrical cavity resonator, thus...
Analysis and Design of Antenna for Automotive Radar with Pencil Beam Based on Dirac Leaky-Wave Antennas
, M.Sc. Thesis Sharif University of Technology ; Memarian, Mohammad (Supervisor)
Abstract
Expansion of communication and the emergence of new fields such as the Internet of Things, has led to the development of smart cars and especially self-driving cars. The antennas used in the radar of these cars are of special importance for a better understanding of the environment around the car. The important parameters for the design of antennae for automotive radar are: good resolution, narrow beam width, the ability to change the angle of the main beam, etc. Among the most common antennas used in these radars are directional antennas, for this reason phased array antennas and leaky wave antennas are suitable options for this application. In general, the complexity and difficulty in the...
Dirac Leaky Wave Antenna for the Microwave and the mm-Wave Band
, M.Sc. Thesis Sharif University of Technology ; Memarian, Mohammad (Supervisor)
Abstract
Novel Dirac Leaky Wave Antennas (DLWAs) based on Substrate Integrated Waveguide (SIW) are presented in this thesis, for millimeter wave frequencies. These DLWAs provide interesting features such as radiating through broadside, beam scanning and ease in fabrication that are well suited for emerging fifth generation (5G) and IoT applications. In this thesis, it is shown that a Dirac photonic crystal can be realized in SIW technology composed of air columns inside a host SIW waveguide, exhibiting a closed bandgap and linear dispersion around broadside. Phase and attenuation constants are controlled to obtain directive beam and scanning in a wide range of angles (from -30˚ to 20˚). This DLWA...
Planar resonant blazed gratings from a circuit model standpoint
, Article IEEE Transactions on Antennas and Propagation ; Volume 68, Issue 4 , 4 April , 2020 , Pages 2765-2778 ; Rodriguez Berral, R ; Mesa, F ; Medina, F ; Memarian, M ; Itoh, T ; Sharif University of Technology
Institute of Electrical and Electronics Engineers Inc
2020
Abstract
The equivalent circuit approach (ECA) is used in this work to analyze and design a previously proposed one-dimensional planar blazed grating of the resonant type. The analysis covers both the classical Littrow configuration, when the direction of the relevant diffracted order coincides with that of the incident wave (Bragg blazing), and when these directions are different (off-Bragg blazing). Once the scattering problem of the grating structure is posed as a discontinuity problem inside an equivalent generalized waveguide (corresponding to the unit cell of the original structure) and studied in terms of its equivalent circuit network, the possibility of transferring all the power of the...