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    Cosmic Inflation with Random Stairlike Potentials and Primordial Black Holes

    , M.Sc. Thesis Sharif University of Technology Nikbakht, Bahar (Author) ; Abolhasani, Ali Akbar (Supervisor) ; Khosravi, Nima (Co-Supervisor)
    Abstract
    Primordial black holes have attracted attention because of their possible role in explaining phenomena such as dark matter and gravitational waves. These observations require the primordial black holes to be in different mass ranges. We investigated the inflaton potentials in which the stochastic sequence of sharp step-like features on the slow-roll potential can produce primordial black holes in different mass ranges. To this end, we first studied the cumulative effects of consecutive steps and showed that there is a resonance mechanism that leads to an exponential enhancement of the power spectrum of certain wavelengths.
     

    Modified Gravity; From Theory to Observation

    , M.Sc. Thesis Sharif University of Technology Eslami, Mohammad Ali (Author) ; Baghram, Shant (Supervisor) ; Khosravi, Nima (Co-Advisor)
    Abstract
    The observations of the cosmic background radiation and large-scale structures show that the standard cosmological model is in good agreement with observational data. The standard model is based on the cosmological constant, dark matter, and Gaussian, nearly scale-invariant, adiabatic, and isotropic initial conditions. Although this model has been phenomenologically successful, but the problems of dark energy, dark matter, missing baryons and early universe remain unresolved. One of the most important theoretical questions in cosmology is whether the cosmological constant is the reason for accelerated cosmic expansion. In other words, is Einsteinian gravity the correct theory on the cosmic... 

    A Study of Laboratory Proposals for Detecting Gravitational Entanglement in Quantum Interferometry

    , M.Sc. Thesis Sharif University of Technology Najafzadeh, Ayda (Author) ; Khosravi, Nima (Supervisor) ; Karimipour, Vahid (Supervisor)
    Abstract
    In recent years, growing attention has been directed toward the possibility of testing the quantum nature of gravity using laboratory-scale systems; a pursuit motivated by the fundamental question of whether the gravitational field, like the other fundamental interactions, possesses quantum degrees of freedom or can be fully described by a classical theory. In this thesis, we begin by reviewing the principles of quantum interference and the role of path-dependent phase in experiments such as atomic interferometry and the gravitational Aharonov–Bohm effect, illustrating how these techniques enable the detection of extremely weak gravitational influences. We then introduce quantum entanglement... 

    Spin-2 Dark Matter Production in the Early Universe and Its Observational Effects in Cosmology

    , M.Sc. Thesis Sharif University of Technology Alizadeh Dargah, Arefeh (Author) ; Khosravi, Nima (Supervisor) ; Baghram, Shant (Supervisor)
    Abstract
    This research explores the possibility of producing spin-2 dark matter in the early Universe as well as its potential observational signatures. Motivated by the experimental and theoretical limitations of conventional dark matter models with spin-0, spin-1, or spin-1/2 particles, this thesis focuses on massive spin-2 states that naturally arise in certain extended gravitational frameworks and may provide a new perspective on the dark matter puzzle. This thesis begins with a review of the dark matter literature. Then, we investigate the production of spin-2 dark matter through the Higgs portal with the freeze-in mechanism by solving the Boltzmann equations for out of the equilibrium... 

    Effect of the shear loading direction on shear behavior of rock and finding new empirical method for determining JRC by fractal dimension

    , Article Annual Conference of the Canadian Society for Civil Engineering 2007: Where the Road Ends, Ingenuity Begins, Yellowknife, NT, 6 June 2007 through 9 June 2007 ; Volume 1 , 2007 , Pages 259-267 Khosravi, A ; Sadaghiani, M. H ; Askari, M ; Khosravi, M ; Sharif University of Technology
    2007
    Abstract
    Effect of different conditions on shear behaviour of rock has been investigated by various researchers. As known, in larger scale the continuity of the rock material is interrupted by separated planes such as bedding planes, faults, shear zones, closure and the behaviour converts to be inelastic and anisotropic. Generally, discontinuities appear repeatedly in more than one preferential direction, creating a three dimensional structure, reducing its stiffness and shear strength as mechanical effects and increasing its transport velocity associated with discontinuity flow as hydraulic effects. They also make rock behavior more complex and different compared to the behavior of soil. According... 

    Anisotropic dynamic loading effects on unsaturated sand shear modulus prepared at different compaction water contents

    , Article Geotechnical Special Publication ; Volume 2024-February, Issue GSP 348 , 2024 , Pages 488-498 ; 08950563 (ISSN); 978-078448530-9 (ISBN); 978-078448531-6 (ISBN); 978-078448532-3 (ISBN); 978-078448533-0 (ISBN); 978-078448534-7 (ISBN); 978-078448535-4 (ISBN) Khorami, S ; Ahmadinezhad, A ; Jafarzadeh, F ; Khosravi, A ; Khosravi, M ; Sharif University of Technology
    2024
    Abstract
    Dynamic properties of soil, such as shear modulus and damping ratio, are necessary for analyzing the dynamic response of the soil in geostructures. This study investigates the effects of partially inherent anisotropy and stress-induced anisotropy on the shear stiffness of unsaturated soil through a series of dynamic hollow cylinder tests at medium strain levels. The different inherent anisotropy in tested sand specimens was introduced through different compaction water contents in the sample preparation stage while keeping the void ratio nearly constant. Moreover, the influences of the angle of maximum principal stress, α, and intermediate principal stress parameter, b = (σ2 − σ3)/(σ1 − σ3),... 

    Cosmological constant potential: a resolution to the hubble tension via the cosmological sound horizon

    , Article Physical Review D ; Volume 110, Issue 6 , 2024 ; 24700010 (ISSN) Khosravi, N ; Sharif University of Technology
    2024
    Abstract
    The cosmological constant term can be seen as a constant potential for a (scalar) field. In this viewpoint, at late times, the field is stopped rolling and behaves as a cosmological constant (w=-1). While at the early Universe, its kinetic term can be dominant and behaves as a stiff fluid (w=+1). This new phase lowers the cosmological sound horizon by increasing the Hubble parameter for very high redshifts. Consequently, the lower cosmological sound horizon results in the higher Hubble constant at the present time. This early phase ends before the photon decoupling, so we do not expect any new physics after the last scattering surface. We checked this model in the presence of (reduced) CMB,... 

    Optimal Control of Spacecraft on the Earth-Moon Lagrange Point Orbits considering Sun and other Planets and Elliptic Orbit Perturbations

    , M.Sc. Thesis Sharif University of Technology Ghorbani, Mehrdad (Author) ; Assadian, Nima (Supervisor)
    Abstract
    In this thesis, optimal station keeping of spacecraft on the closed-orbits near the Earth-Moon Lagrange points has been investigated. Lagrange points L1 and L2 are unstable equilibrium points of the circular restricted three-body problem (CRTBP), and periodic orbits near them are the destination of modern missions. However, perturbations resulting from the gravitational forces of the Sun and the planets and the eccentricity of the orbit of the Moon around the Earth make the Lagrange point unstable, even L4 and L5, which are stable in CRTBP. The most suitable choice for spacecraft mission near the collinear Lagrange points is the Halo and other closed-orbits around them, which need... 

    Orbit Design and Optimization of Satellite Constellation for Regional Coverage

    , M.Sc. Thesis Sharif University of Technology Borhani, Amir (Author) ; Assadian, Nima (Supervisor)
    Abstract
    In this thesis, the satellite constellation orbit design for regional coverage is investigated. The orbits of satellites in a constellation for Earth observation missions play a crucial role in performance and characteristics of the mission; for example the image resolution, the area of coverage, and the coverage interval. In this thesis the problem is to find the optimal initial orbital elements for meeting the earth observation mission objectives for one or several sites. The cost functions are the total coverage time, the maximum gap time, time average gap, altitude, and number of satellites. The problem is solved in a multi-objective manner for different combination of two of the above... 

    Autonomous Orbit Estimation for Regional Navigation Satellites

    , M.Sc. Thesis Sharif University of Technology Memaran, Mohsen (Author) ; Asadian, Nima (Supervisor)
    Abstract
    In this thesis, autonomous orbit estimation of regional navigation satellites has been investigated. Estimation of satellite orbit is an integral part of satellite navigation, which may be executed via assistance of ground station. As the satellite is exposed to the ground station view, range, direction and rate of range is measured by mean of ranging instrumentation relative to ground reference, hence the precise position is calculated. In this thesis a set of satellites are investigated in a unique structure called constellation with the purpose of navigation. The occurrence which is likely to happen in this condition, is the failure of ground station under certain circumstances or losing... 

    Fabrication and Characterization of a UF Ceramic Membrane based on TiO_2 Nanoparticles

    , M.Sc. Thesis Sharif University of Technology Mirkazemi, Amin (Author) ; Taghavinia, Nima (Supervisor)
    Abstract
    UF membranes are widely used in various industries now, a major type of these membranes are ceramic membranes which are resistant to high temperatures and corrosive fluids. In this thesis we developed an anisotropic UF ceramic membrane based on 20nm TiO2 nanoparticles on a prous sustrate. We had two major challenges, the first one was to find a suitable prous substrate and the second one was to find an appropriate coating method. Our main task was to optimise the process conditions to achive a crackless and uniform membrane layer with minimal ups and downs. Lots of coating methods and TiO2 inks have been tried, finally we used a coating method which we called it “Soft Blade Coating”, with... 

    Continuous-thrust Trajectory Optimization in the Binary Asteroids System

    , M.Sc. Thesis Sharif University of Technology Ashrafi, Mehnraz (Author) ; Asadian, Nima (Supervisor)
    Abstract
    In this thesis, the optimal trajectories of a spacecraft in the binary asteroids system is studied. The objective functions of optimal trajectories in these system are the maximum coverage of the asteroids surface and minimum time and fuel consumption. For this purpose, the dynamic of binary system is modeled. The binary system of 1999 KW4 is selected as a case study. The ellipsoid-sphere model is a good approximation for the case of this study. In this model, the asteroids orbit in a circular orbit around each other in a spin-spin-orbit resonance configuration, in which the asteroids’ rotational velocity is equal to orbital mean motion. Then, the equations of motion of the spacecraft as the... 

    Fault-tolerant Attitude Control of Sattelite Using Neural Networks

    , M.Sc. Thesis Sharif University of Technology Sepehr, Firoozeh (Author) ; Asadian, Nima (Supervisor)
    Abstract
    This research aims to introduce a new integrated fault tolerant attitude control system of satellites based on the neural networks. First, a linear controller and an optimal controller are designed assuming that no fault occurs in the reaction wheels of the satellite. It is obvious that these controllers are not able to respond properly when a fault occurs. Therefore, artificial neural networks are employed in the fault tolerant controller design. Neural networks are well-known for their adaptiveness and the ability to learn the dynamics of a system. Therefore, they can be used to predict the faulty conditions. In this research two approaches are examined to deal with the faulty conditions.... 

    Fabrication and Characterization of Inverted Perovskite Solar Cells Using Nickel Oxide as Hole Transporting Layer

    , Ph.D. Dissertation Sharif University of Technology Saki, Zahra (Author) ; Taghavinia, Nima (Supervisor)
    Abstract
    In this research, we study and optimize the inverted perovskite solar cells (PSCs) using nano layers of NiOx and Li:NiOx as hole transporting layers (HTLs) and nano layers of PC70BM and C60 as electron transporting layers (ETLs). We fabricated inverted PSCs with three different HTLs, namely MoOx, PEDOT:PSS and NiOx, using vapor assisted solution processed (VASP) method for making MAPbI3 perovskite which yielded a power conversion efficiency (PCE) of 1%, 1.93% and 3.65%, respectively. Solution-processed deposition method, high transparency (˃90%) and high band gap (3.9 eV) are the most advantages to use NiOx as HTL in current research. Using lithium as dopant to the NiOx increases the... 

    Dynamics of Tethered Satellite Formation Around Binary Asteroids

    , M.Sc. Thesis Sharif University of Technology Bakhshipour, Mehran (Author) ; Assadian, Nima (Supervisor)
    Abstract
    Studying of binary asteroids because of achieving data of existence sources in the world persuades to investigate about tethered satellite formation around binary asteroids in future missions. About 20 percent of asteroids around the sun are binary asteroids. It is going to analyse dynamics of tethered satellite around Didymos binary asteroid. Light mass of the asteroid is good reason to consider gravitational harmonic perturbation, and leads to attention about solar radiation pressure depends on distance in modelling of the dynamical system. It will be zonal harmonics up to second order and sectoral. Satellites are such a particle as an assumption; that is why attitude motion of satellites... 

    Fractional Order Modeling and Control of Flexible Satellite

    , M.Sc. Thesis Sharif University of Technology Hosseini, Masoud (Author) ; Assadian, Nima (Supervisor)
    Abstract
    In recent decades the structure of space systems has gained more complexity due to the development of space technology. Usage of larger structure in spacecraft could cause undesirable structural vibration. mNeglecting this phenomena would affect the performance of satellite subsystems specially the accuracy of satellite control subsystem. By implementing fractional order calculus in modeling of flexible satellite, the damping effect could be modeled better than classical damping model. Also using fractional order integrator and differentiator operator will increase the performance of control subsystem. In this research, the fractional order calculus has been used in modeling and control of... 

    Spacecraft Rendezvous and Docking Using Adaptive Neuro-Fuzzy Inference System

    , M.Sc. Thesis Sharif University of Technology Tallebi, Morteza (Author) ; Asadian, Nima (Supervisor)
    Abstract
    In this research an ANFIS controller will be developed to rendezvous and dock with a non-cooperative spacecraft; the controller must make the spacecraft reach the velocity and nearby position of the target spacecraft. Due to uncertainty in modeling and changes in the moment inertia tensor, the controller must be able to adapt with these changes and uncertainty, these changes may happen because of robotic arm or solar panel movings. Robustness of the controller will be evaluated by applying orbital disturbances and modeling errors through monte-carlo simulations. To model the spacecraft the specifications of a known spacecraft will be used but some specifications may be studied parametricaly.... 

    Coupled Rotational and Translational Modelling of Two Satellite Tethered Formation and their Robust Attitude Control

    , M.Sc. Thesis Sharif University of Technology Darabi, Atefe (Author) ; Assadian, Nima (Supervisor)
    Abstract
    The 6DOF modelling and robust attitude control of two tethered satellites using tether tension moments is studied in this thesis. In this regard, the coupled rotational and translational dynamics of two satellites connected by a tether in the presence of Earth’s gravitational perturbation, aerodynamic drag, solar radiation pressure and third body effects (Sun and Moon) and also uncertainties in some of physical parameters of system and sensor’s outputs is modelled. Moreover, the tether attachment point to the satellites is different from their center of mass and its effect on dynamics of the system is taken into consideration. Then, the attitude of both satellites are controlled using robust... 

    Fault-Tolerant Attitude Control of Satellite with Thrusters Using μ-synthesis

    , M.Sc. Thesis Sharif University of Technology Taheri, Abdolreza (Author) ; Assadian, Nima (Supervisor)
    Abstract
    In this project, a fault-tolerant attitude control system is developed for thruster-driven satellites. The proposed method has the advantage over current state-of-the-art approaches in that it does not require a fault detection and isolation system. Generalized moments are generated by a robust controller that is designed using mixed sensitivity H_∞ and μ-synthesis by DK-iteration. Moreover, a pulse-width modulation technique with quadratic programming optimization is tuned to map the controller outputs to thruster on-off commands as efficiently as possible. The controller is designed to tolerate up to ±30% perturbations in inertia properties and thrust degradations up to 90% of the nominal... 

    Attitude and Deformation Estimation of Flexible Satellite Using Magnetometer and Sun Sensor

    , M.Sc. Thesis Sharif University of Technology Ghani, Marzieh (Author) ; Asadian, Nima (Supervisor)
    Abstract
    The estimation of attitude and deformation of a flexible satellite using magnetometer and sun sensor data are studied in this thesis. To this end, the dynamical differential equations of the flexible satellite have been derived using Lagrange’s equation. These equations of motion are then utilized for the purpose of simulation and verification. After introducing the measurements equations, the observability of the satellite with flexible panels has been evaluated. Afterward, the attitude of the satellite body and deformation of the flexible panels have been estimated by EKF (Extended Kalman Filter) as well as UKF (Unscented Kalman Filter). The results show that the estimations using UKF are...