Loading...
Search for:
momen-tayefeh--mehrshad
0.092 seconds
SNRGAN: the semi noise reduction GAN for image denoising
, Article 2024 20th CSI International Symposium on Artificial Intelligence and Signal Processing, AISP 2024 ; 2024 ; 979-835038394-2 (ISBN) ; Momen Tayefeh, M ; Hasheminasab, F. Z ; Ghahramani, A. G ; Sharif University of Technology
2024
Abstract
Conventional noise reduction methods often fail to effectively handle high levels of noise, leading to artifacts and distortions. This paper proposes a Generative Adversarial Network (GAN) approach for noise reduction with low complexity. The proposed Semi Noise Reduction GAN (SNRGAN) effectively learns the underlying patterns of noise and generates denoised versions of noisy images, even with different noise levels. Training our model on three diverse datasets yielded admissible results, as evidenced by superior PSNR and NMSE scores. Furthermore, our model excelled in both subjective evaluations and objective metrics and its efficacy in handling elevated noise levels positions it as a...
Brain Tumor Detection with Vision Transformers and Faster R-CNN
, M.Sc. Thesis Sharif University of Technology ; Hemmatyar, Ali Mohammad Afshin (Supervisor) ; Ghahramani Ghahramani, Amir Ali (Co-Supervisor)
Abstract
In the field of cancer diagnosis, particularly brain tumors, the priority is to achieve highly accurate tumor detection. Deep learning has shown remarkable potential in object detection tasks, making it a valuable tool for identifying brain tumors. We have proposed a new method for combining the strength of Faster R-CNN in detecting objects and the ability of Vision Transformer’s (Faster-VIT) ability to extract essential features. The proposed method significantly improves the accuracy and efficiency of brain tumor detection in MRI images. We have called the proposed combination Faster-VIT. To assess the effectiveness of the proposed method, we have utilized the Br35H dataset, comprising...
Simulation and Control of an Autorefrigerated CSTR
, M.Sc. Thesis Sharif University of Technology ; (Shahrokhi, Mohammad (Supervisor)
Abstract
This thesis focuses on modeling, simulation and control of bulk polymerization of styrene in an autorefrigerated reactor where the generated heat is removed by heat of vaporization of the monomer. By means of two mathematical models for the kinetics of reaction, static and dynamic simulations were performed. For this purpose the equilibrium points were calculated using the steady state analysis, and then the reactor temperature was controlled at the unstable point using PI and adaptive generalized predictive controller (AGPC). In order to implement the GPC scheme a process model is required to provide the process output estimate over the prediction horizon. For this purpose an auto...
Particle trajectory study in submerged flows with baffles using v 2̄ - f and k -ε turbulence models
, Article 46th AIAA Aerospace Sciences Meeting and Exhibit, Reno, NV, 7 January 2008 through 10 January 2008 ; 2008 ; 9781563479373 (ISBN) ; Sherif, A ; Firoozabadi, B ; Sharif University of Technology
2008
Abstract
In this paper, the structure of a wall jet deflected by a baffle along with the trajectory of particles has been studied. This baffle is used to produce a stable deflected surface jet, thereby deflecting the high-velocity supercritical stream away from the bed to the surface. An elliptic relaxation turbulence model (v2̄ - f model) has been used to simulate this submerged flow. During the last few years, the v2̄ - f turbulence model has become increasingly popular due to its ability to account for near-wall damping without use of damping functions. In addition, it has been proven that the v2̄ - f model is superior to other RANS methods in many fluid flows where complex flow features are...
Quantum Process Tomography: A New Approach Based on Moments
, M.Sc. Thesis Sharif University of Technology ; Tayefeh Rezakhani, Ali (Supervisor)
Abstract
In this report, we have formulated a new technique for characterizing quantum optical processes based on probing unknown processes only with coherent states and simply by measuring normally-ordered moments of output states. Our method has two substantial advantages in comparison with previous methods.First, for practical purposes of uantum-optical communications and information, predicting of the classicality or nonclassicality of output states from an unknown quantum process is generally important. Because of truncation of the Hilbert space in the Fock basis and/or exploiting Klauder theorem, antecedent methods failed to carry out foretelling the [non]classicality features of the process’...
Design and Fabrication of Tip for a Nanolithography System
, M.Sc. Thesis Sharif University of Technology ; Rashidian, Bijan (Supervisor)
Abstract
Various applications of nanostructures in electronics, optoelectronics, MEMS, photonics and plasmonic make their fabrication an interesting research topic recently. Progress in nanotechnology depends on the capability to fabricate, position and interconnect nanometer-scale structures. The development of fabrication devices with nanoscales is mainly dependent on the existence of a suitable nanolithography approach. Patterning materials with nanoscale features aimed at improving integration and device performance faced several challenges. The limitation of conventional lithography systems including resolution related issues, operational costs and lack of flexibility to pattern organic and...
Characterization of topological phases in the compass ladder model
, Article Journal of Physics Condensed Matter ; Volume 28, Issue 17 , 2016 ; 09538984 (ISSN) ; Langari, A ; Tayefeh Rezakhani, A ; Sharif University of Technology
Institute of Physics Publishing
2016
Abstract
The phase diagram of the quantum compass ladder model is investigated through numerical density matrix renormalization group based on infinite matrix product state algorithm and analytic effective perturbation theory. For this model we obtain two symmetry-protected topological phases, protected by a Z2 × Z2 symmetry, and a topologically-trivial Z2-symmetry-breaking phase. The symmetry-protected topological phases - labeled by symmetry fractionalization - belong to different topological classes, where the complexconjugate symmetry uniquely distinguishes them. An important result of this classification is that, as revealed by the nature of the Z2-symmetry-breaking phase, the associated quantum...
Fluctuation relation for heat exchange in Markovian open quantum systems
, Article Physical Review E ; Volume 97, Issue 4 , April , 2018 ; 24700045 (ISSN) ; Golshani, M ; Tayefeh Rezakhani, A ; Sharif University of Technology
American Physical Society
2018
Abstract
A fluctuation relation for the heat exchange of an open quantum system under a thermalizing Markovian dynamics is derived. We show that the probability that the system absorbs an amount of heat from its bath, at a given time interval, divided by the probability of the reverse process (releasing the same amount of heat to the bath) is given by an exponential factor which depends on the amount of heat and the difference between the temperatures of the system and the bath. Interestingly, this relation is akin to the standard form of the fluctuation relation (for forward-backward dynamics). We also argue that the probability of the violation of the second law of thermodynamics in the form of the...
Modeling magneto-mechanical behavior of Fe3O4 nanoparticle/polyamide nanocomposite membrane in an external magnetic field
, Article Journal of Composite Materials ; Volume 52, Issue 11 , 2018 , Pages 1505-1517 ; 00219983 (ISSN) ; Wiesner, M ; Mousavi, A ; Poursalehi, R ; Sharif University of Technology
SAGE Publications Ltd
2018
Abstract
The magnetic response of a polyamide nanocomposite membrane under applying a magnetic field has been modeled to evaluate elastic deformation order of magnitude. A PA-Fe3O4 nanocomposite membrane is considered to be modeled under influence of volume plane stress caused by a magnetic field. The modeling of the mechanical behavior of Fe3O4-PA nanocomposite membrane suggests that nanoparticle displacements within the nanocomposite, in the order of 200 nm under applying an external magnetic field, are greater than free volumes or porosities of the polyamide membrane. The membrane can be excited to mechanically vibrate by applying an alternating magnetic field lower than 0.1 T. As the results...
XPS study of size effects of Fe3O4 nanoparticles on crosslinking degree of magnetic TFN membrane
, Article Polymer Testing ; Volume 73 , 2019 , Pages 232-241 ; 01429418 (ISSN) ; Poursalehi, R ; Wiesner, M ; Mousavi, S. A ; Sharif University of Technology
Elsevier Ltd
2019
Abstract
The control of thin film nanocomposite (TFN) membranes cross-linking degree is an important factor to design new membranes and optimizing permeation characteristics. The Fe3O4 nanoparticle's based TFN membranes due to potentially added magnetic responsive properties to the membrane has a great importance in developing membrane architectures. Fe3O4/polyamide (PA) TFN membranes filled with nanoparticles in different sizes and concentrations have been synthesized. Cross-linking degree of PA layer characterized with Fourier transform spectroscopy (FTIR) and x-ray photoelectron spectroscopy (XPS) methods to evaluate size dependency of the cross-linking degree of PA layer network. Obvious...
Evaluation of mechanical properties of multilayer graphyne-based structures as anode materials for lithium-ions batteries
, Article European Physical Journal Plus ; Volume 137, Issue 3 , 2022 ; 21905444 (ISSN) ; Rezaee, R ; Azizi, B ; Rezaee, S ; Hou, H ; Ji, X ; Sharif University of Technology
Springer Science and Business Media Deutschland GmbH
2022
Abstract
Among various two-dimensional carbon allotropes, graphyne has received extensive research attention with outstanding physical features and excellent application prospects for energy storage systems, specifically lithium-ion batteries anode. The mechanical characteristic of the anode affects the performance and durability of the battery during charge/discharge cycles. Therefore, this research investigates the mechanical properties of α -, β -, and γ -graphyne multilayer configurations using the molecular dynamics (MD) simulation approach. The results demonstrate that the mechanical properties of multilayer graphyne do not significantly depend on carbon layers; however, as the layer numbers...
Pressure effects on the carbon nano-tube embedded Y-123 superconductors
, Article Physica B: Condensed Matter ; Volume 487 , 2016 , Pages 42-46 ; 09214526 (ISSN) ; Manivannan, N ; Daadmehr, Vahid ; Tayefeh Rezakhani, A ; Hoon Kim, K ; Sharif University of Technology
Elsevier
2016
Abstract
It has been known that applying pressure and doping carbon nano-tubes (CNTs) can each affect the behavior of high temperature superconductors. Here, bridging these two effects in order to see how they can interplay, we investigate how the dc resistivity varies in both pure and CNT-doped polycrystalline YBa2Cu3O7-δ (Y-123) compounds under hydrostatic pressure. We demonstrate that the broadening of the resistivity transition in the CNT-doped samples (of 0.7 wt%) is smaller than the undoped samples. In addition, by increasing applied pressure, the doped samples exhibit a higher rate of the increase of the transition temperatures Tcon and Tcmid than the undoped samples. Interestingly as well,...
Cyto and genotoxicities of graphene oxide and reduced graphene oxide sheets on spermatozoa
, Article RSC Advances ; Vol. 4, issue. 52 , May , 2014 , pp. 27213-27223 ; ISSN: 20462069 ; Akhavan, O ; Shamsara, M ; Rahighi, R ; Esfandiar, A ; Tayefeh, A. R ; Sharif University of Technology
2014
Abstract
Concentration-dependent cyto and genotoxicities of graphene oxide (GO) and reduced GO (rGO) sheets on spermatozoa were studied. rGO sheets with various surface chemical states were achieved using hydrazine (N2H 4) hydrothermal (HT) reactions and green tea polyphenols (GTPs). Although 0.1 μg mL-1 graphene could not change sperm viability and kinetic parameters, <40% and 20% of spermatozoa were viable and progressively motile, after 2 h incubation with 400 μg mL-1 GO or rGO, respectively. All the graphene nanomaterials induced concentration- dependent reductions of adenosine triphosphate and NAD+/NADH produced by spermatozoa for motility and metabolic activity. While GO, N 2H4-rGO, and HT-rGO...
Quantum detailed balance conditions and fluctuation relations for thermalizing quantum dynamics
, Article Physical Review E ; Volume 98, Issue 5 , 2018 ; 24700045 (ISSN) ; Benatti, F ; Floreanini, R ; Marcantoni, S ; Golshani, M ; Tayefeh Rezakhani, A ; Sharif University of Technology
American Physical Society
2018
Abstract
Quantum detailed balance conditions and quantum fluctuation relations are two important concepts in the dynamics of open quantum systems: both concern how such systems behave when they thermalize because of interaction with an environment. We prove that for thermalizing quantum dynamics the quantum detailed balance conditions yield validity of a quantum fluctuation relation (where only forward-time dynamics is considered). This implies that to have such a quantum fluctuation relation (which in turn enables a precise formulation of the second law of thermodynamics for quantum systems) it suffices to fulfill the quantum detailed balance conditions. We, however, show that the converse is not...
Synthesis and Characterization of a Novel Hydrogel Wound Dressing based on Silk Fibroin and Zinc Oxide Nanoparticles
, M.Sc. Thesis Sharif University of Technology ; Nemati, Ali (Supervisor) ; Shokrgozar, Mohammad Ali (Supervisor) ; Farokhi, Mehdi (Co-Supervisor)
Abstract
Recently, some wound dressings have been designed that are expected to enhance the wound healing process and prevent blood bleeding and infection. Polymeric dressings have attracted attention due to their biocompatibility, biodegradability, lack of toxicity, and non-allergenic nature. There is widespread interest in using silk fibroin (SF) for this purpose because of its unique properties. Given these points, we have designed an injectable antioxidant hydrogel wound dressing based on SF and Polydopamine(PDA) modified ZnO nanoparticles. First, ZnO nanoparticles were doped with Cu and then modified with PDA (ZnCuO@PDA). XRD, FTIR, SEM, and TEM characterizations were carried out to confirm the...
Impacts of graphene oxide contamination on a food web: threats to somatic and reproductive health of organisms
, Article Ecotoxicology and Environmental Safety ; Volume 285 , 2024 ; 01476513 (ISSN) ; Giesy, J. P ; Liang, Z ; Akhavan, O ; Tayefeh, A. R ; Joupari, M. D ; Sanati, M. H ; Shariati, P ; Shamsara, M ; Farmany, A ; Sharif University of Technology
2024
Abstract
Contamination of aquatic food webs with nanomaterials poses a significant ecological and human health challenge. Ingestion of nanomaterials alongside food disrupts digestion and impairs physiological processes, with potential consequences for organism fitness and survival. Complex interactions between nanomaterials and biota further exacerbate the issue, influencing life-history strategies and ecosystem dynamics. Accumulation of nanomaterials within autotrophic and detritus-based food webs raises concerns about biomagnification, especially for top-level consumers and seafood-dependent human populations. Understanding the extent and impact of nanomaterial contamination on aquatic biota is...