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FEM simulation of two- and three-electrode spark gap discharges
, Article Scientia Iranica ; Volume 9, Issue 2 , 2002 , Pages 116-124 ; 10263098 (ISSN) ; Golnabi, H ; Sharif University of Technology
Sharif University of Technology
2002
Abstract
The discharge process in two- and three-electrode pure-nitrogen spark gaps is simulated using Finite Element Method (FEM) to solve for the electric potential and field. The effects of secondary electron emission, photo-ionization and recombination mechanisms are taken into account. Current growth and the evolution of ion and electron distributions in the discharges are studied and an oscillation due to cathode streamer movements has been observed, in agreement with the theoretically estimated values. The study of complete discharges has been possible by introducing proper absorbing boundary conditions over the electrodes, by which numerical instabilities have been suppressed. The simulation...
Assessing the GHG mitigation pathways in the Iran energy supply system
, Article 2024 9th International Conference on Technology and Energy Management, ICTEM 2024 ; 2024 ; 979-835032979-7 (ISBN) ; Khajehpour, H ; Khorasani, A. H. F ; Sharif University of Technology
2024
Abstract
The process of making decisions about energy and environment-related matters in Iran has consistently been intertwined with intricate difficulties. Addressing these complexities and the need to manage them, this paper aims to assist decision-makers in modeling the energy supply system. The main objective of this research is to propose optimal solutions for energy supply while reducing greenhouse gas emissions in line with the national upstream policies. If Iran wants to fulfill its commitments under an assumed national mitigation target, it needs to reduce its emissions by 30% by 2040. In this regard, the supply system modeling was performed under two scenarios, Business as Usual and...
Crosstalk suppression and high-fidelity measurement in 2-D tunneling of coupled Josephson junctions
, Article IEEE Transactions on Applied Superconductivity ; Volume 22, Issue 4 , 2012 ; 10518223 (ISSN) ; Zandi, H ; Khorasani, S ; Sharif University of Technology
2012
Abstract
We present a new configuration concept in which two similar Josephson junctions are coupled through a capacitor placed in parallel to a dc-superconducting quantum interference device (SQUID) to improve the characteristics of phase qubits. In real coupled quantum systems, because of mutual effects such as crosstalk, entangled quantum states cannot be independently measured. The proposed two-qubit system is demonstrated to have a negligible crosstalk, obtained from the application of a single measurement pulse and an appropriate external flux to one of the junctions and the dc-SQUID, respectively. Surprisingly, the theoretically predicted fidelity for a single-qubit design increases to 99.99%...
Precision photonic band structure calculation of Abrikosov periodic lattice in type-II superconductors
, Article Physica C: Superconductivity and its Applications ; Volume 460-462 II, Issue SPEC. ISS , 2007 , Pages 1222-1223 ; 09214534 (ISSN) ; Zandi, H ; Khorasani, S ; Fardmanesh, M ; Sharif University of Technology
2007
Abstract
We have performed a numerical solution for band structure of an Abrikosov vortex lattice in type-II superconductors forming a periodic array in two dimensions for applications of incorporating the photonic crystals concept into superconducting materials with possibilities for optical electronics. The implemented numerical method is based on the extensive numerical solution of the Ginzburg-Landau equation for calculating the parameters of the two-fluid model and obtaining the band structure from the permittivity, which depends on the above parameters and the frequency. This is while the characteristics of such crystals highly vary with an externally applied static normal magnetic field,...
An analytical and experimental study on dampening material effects on the dynamic behavior of free-free aluminum sheets
, Article Engineering Solid Mechanics ; Volume 9, Issue 2 , 2021 , Pages 111-122 ; 22918744 (ISSN) ; Hosseini Kordkheili, S. A ; Parviz, H ; Sharif University of Technology
Growing Science
2021
Abstract
This work aims to present an experimentally verified analytical solution to examine damping properties of systems including viscoelastic treatments. Although there are several methods for characterizing the behavior of three-layer damping systems, the RKU method is the most frequently used one. In this paper, this method is modified such a way that to be applied for a five-layer damping system. The achieved analytical relations are then employed to study the effects of a four-layer vibration-absorbing coating on the dynamic behavior of an aluminum sheet with free-free boundary conditions. Since the vibration-damping properties of the coating are unknowns, its loss factor and shear modulus...
Cavity quantum electrodynamics in the ultrastrong coupling regime
, Article Scientia Iranica ; Volume 18, Issue 3 F , June , 2011 , Pages 820-826 ; 10263098 (ISSN) ; Chalabi, H. R ; Arab, A ; Khorasani, S ; Sharif University of Technology
2011
Abstract
We revisit the mathematical formulation of the famous Jaynes-Cummings-Paul Hamiltonian, which describes the interaction of a two-level atom with a single mode of an electromagnetic cavity reservoir. We rigorously show that under the condition of ultrastrong coupling between the atom and cavity in which the transition frequency is comparable to the coupling frequency, the bosonic field operators undergo non-sinusoidal time variations. As a result, the well-known solutions to the Jaynes-Cummings-Paul model are no longer valid, even when the rotating wave approximation is not used. We show how a correct mathematical solution could be found instead
A combinatorial approach for active and reactive power flow tracking
, Article International Review of Electrical Engineering ; Volume 5, Issue 5 , 2010 , Pages 2209-2216 ; 18276660 (ISSN) ; Habibi, M. R ; Khorasani, H ; Rashidinejad, M ; Sharif University of Technology
2010
Abstract
This paper establishes a simple and topological approach to track real and reactive power flow in electric transmission systems. The presented method utilizes the well-known Proportional Sharing Theorem in order to evaluate the contribution of each power source to grid elements' supplied input power. We have also put forward an approximate power tracing method for upgraded grids, using its own previously surveyed results. The main advantages of the proposed procedure, compared with conventional methods, are discussed extensively. The effectiveness of this approach has been studied and ascertained for small-scale power systems, showing prominent speed and accuracy
Orbital angular momentum with the approach of using in sub-6GHz 5G mobile communications for wireless applications
, Article Proceedings - 2024 IEEE 6th Global Power, Energy and Communication Conference, GPECOM 2024 ; 2024 , Pages 800-803 ; 979-835035108-8 (ISBN) ; Zakeri, H ; Moradi, G ; Alibakhshikenari, M ; See, C. H ; Limiti, E ; Sharif University of Technology
2024
Abstract
This paper discusses the effect of the orbital angular momentum on the fifth generation of mobile communication. A new generation of mobile requires advanced antenna systems capable of sending and receiving massive amounts of data. The beamforming method and multi-input multi-output systems are proposed solutions to increase the communication network's channel capacity by using a six-element multiple-input multiple-output (MIMO) antenna system working in the N77 (3.2-4.2 GHz) and the N79 (4.4 GHz to 5.0 GHz) frequency bands for smartphone devices.The OAM, an inherent feature of electromagnetic waves, is a suitable solution for increasing channel capacity. This feature will increase channel...
Abrupt PN Junctions: Analytical solutions under equilibrium and non-equilibrium
, Article Solid-State Electronics ; Volume 122 , 2016 , Pages 37-44 ; 00381101 (ISSN) ; Sharif University of Technology
Elsevier Ltd
2016
Abstract
We present an explicit solution of carrier and field distributions in abrupt PN junctions under equilibrium. An accurate logarithmic numerical method is implemented and results are compared to the analytical solutions. Analysis of results shows reasonable agreement with numerical solution as well as the depletion layer approximation. We discuss extensions to the asymmetric junctions. Approximate relations for differential capacitance C-V and current-voltage I-V characteristics are also found under non-zero external bias
Propagation of light in Schwarzschild geometry
, Article Proceedings of SPIE - The International Society for Optical Engineering, 25 January 2010 through 28 January 2010 ; Volume 7597 , 2010 ; 0277786X (ISSN) ; 9780819479938 (ISBN) ; Sharif University of Technology
2010
Abstract
In this paper, the equivalent medium of Schwarzschild metric is discussed. The corresponding ray-tracing equations are integrated for the equivalent medium of the Schwarzschild geometry, which describes the curved space around a spherically symmetric, irrotational, and uncharged blackhole. We make comparison to the well-known expression by Einstein. While Einstein's estimate is reasonably good for large closest distances of approach to the star, it disregards the optical anisotropy of space. Instead, Virbhadra's estimate which takes the effects of anisotropy of Schwarzschild metric is shown to be more consistent with numerical simulations. Hence, a true physical anisotropy in the velocity of...
New basis functions for wave equation
, Article Scientia Iranica ; Volume 23, Issue 6 , 2016 , Pages 2928-2933 ; 10263098 (ISSN) ; Sharif University of Technology
Sharif University of Technology
2016
Abstract
The Differential Transfer Matrix Method is extended to the complex plane, which allows dealing with singularities at turning points. The results for real-valued systems are simplified and a pair of basis functions are found. These bases are a bit less accurate than WKB solutions but much easier to work with because of their algebraic form. Furthermore, these bases exactly satisfy the initial conditions and may go over the turning points without the divergent behavior of WKB solutions. The findings of this paper allow explicit evaluation of eigenvalues of confined modes with high precision, as demonstrated by few examples
A proof for poisson bracket in non-commutative algebra of quantum mechanics
, Article Electronic Journal of Theoretical Physics ; Volume 13, Issue 35 , 2016 , Pages 57-71 ; 17295254 (ISSN) ; Sharif University of Technology
EJTP Publisher
2016
Abstract
The widely accepted approach to the foundation of quantum mechanics is that the Poisson bracket, governing the non-commutative algebra of operators, is taken as a postulate with no underlying physics. In this manuscript, it is shown that this postulation is in fact unnecessary and may be replaced by a few deeper concepts, which ultimately lead to the derivation of Poisson bracket. One would only need to use Fourier transform pairs and Kramers- Kronig identities in the complex domain. We present a definition of Hermitian time-operator and discuss some of its basic properties. © Electronic Journal of Theoretical Physics
Higher-order interactions in quantum optomechanics: Analytical solution of nonlinearity
, Article Photonics ; Volume 4, Issue 4 , 2017 ; 23046732 (ISSN) ; Sharif University of Technology
2017
Abstract
A method is described to solve the nonlinear Langevin equations arising from quadratic interactions in quantum mechanics. While the zeroth order linearization approximation to the operators is normally used, here, first and second order truncation perturbation schemes are proposed. These schemes employ higher-order system operators, and then approximate number operators with their corresponding mean boson numbers only where needed. Spectral densities of higher-order operators are derived, and an expression for the second-order correlation function at zero time-delay has been found, which reveals that the cavity photon occupation of an ideal laser at threshold reaches √6 - 2, in good...
Higher-order interactions in quantum optomechanics: Revisiting theoretical foundations
, Article Applied Sciences (Switzerland) ; Volume 7, Issue 7 , 2017 ; 20763417 (ISSN) ; Sharif University of Technology
MDPI AG
2017
Abstract
The theory of quantum optomechanics is reconstructed from first principles by finding a Lagrangian from light's equation of motion and then proceeding to the Hamiltonian. The nonlinear terms, including the quadratic and higher-order interactions, do not vanish under any possible choice of canonical parameters, and lead to coupling of momentum and field. The existence of quadratic mechanical parametric interaction is then demonstrated rigorously, which has been so far assumed phenomenologically in previous studies. Corrections to the quadratic terms are particularly significant when the mechanical frequency is of the same order or larger than the electromagnetic frequency. Further discussions...
Time operator in relativistic quantum mechanics
, Article Communications in Theoretical Physics ; Volume 68, Issue 1 , 2017 , Pages 35-38 ; 02536102 (ISSN) ; Sharif University of Technology
2017
Abstract
It is first shown that the Dirac's equation in a relativistic frame could be modified to allow discrete time, in agreement to a recently published upper bound. Next, an exact self-adjoint 4 × 4 relativistic time operator for spin-1/2 particles is found and the time eigenstates for the non-relativistic case are obtained and discussed. Results confirm the quantum mechanical speculation that particles can indeed occupy negative energy levels with vanishingly small but non-zero probablity, contrary to the general expectation from classical physics. Hence, Wolfgang Pauli's objection regarding the existence of a self-adjoint time operator is fully resolved. It is shown that using the time...
Diamond configuration for non-reciprocal transmission
, Article IEEE Journal of Quantum Electronics ; Volume 53, Issue 4 , 2017 ; 00189197 (ISSN) ; Sharif University of Technology
Institute of Electrical and Electronics Engineers Inc
2017
Abstract
A system scheme is presented, which allows non-reciprocal wave transmission or directional amplification of electromagnetic signals, using a boxed four-node method. Edges represent strong hopping interactions and diagonals stand for weak parametric interactions. Using careful optimization of values for design parameters, we are able to obtain non-reciprocity in excess of 12 and 130 dB for intrinsic and extrinsic configurations at identical input/output frequencies. For the directional amplification, an isolation as high as 40 dB is demonstrated with the forward/backward gains of ±20 dB. Cascading two such systems potentially can offer high isolations at high gains. © 1965-2012 IEEE
Third-order optical nonlinearity in two-dimensional transition metal dichalcogenides
, Article Communications in Theoretical Physics ; Volume 70, Issue 3 , 2018 , Pages 344-360 ; 02536102 (ISSN) ; Sharif University of Technology
2018
Abstract
We present a detailed calculation of the linear and nonlinear optical response of four types of monolayer two-dimensional (2D) transition-metal dichalcogenides (TMDCs), having the formula MX2 with M = Mo, W and X = S, Se. The calculations are based on 6-band tight-binding model of TMDCs, and then performing a semi-classical perturbation analysis of response functions. We numerically calculate the linear and nonlinear surface susceptibility tensors with ωΣ = ωr + ωs + ωt. Both non-degenerate and degenerate cases are studied for third-harmonic generation and nonlinear refractive index, respectively. Computational results obtained with no external fitting parameters are discussed regarding two...
Clearance effects on dynamic behavior of a continuous mechanical system
, Article JVC/Journal of Vibration and Control ; Volume 21, Issue 13 , October , 2015 , Pages 2509-2519 ; 10775463 (ISSN) ; Momeni Massouleh, S. H ; Khorasani, R ; Sharif University of Technology
SAGE Publications Inc
2015
Abstract
An analytical modified method is presented to investigate the clearance effects on the dynamic behavior of cantilever beams. In this work, apart from clearance, all other nonlinearities are avoided to be considered during the analytical solution. The beam is idealized using an equivalent single-degree-of-freedom structure. A tri-linear stiffness system is also adopted to simulate the beam together with the clearance. Subsequently the analytical solution is derived for a cantilever beam structure with and without considering structural damping. The experimental method is employed to verify the results from the presented analytical solutions. It is noted that the results obtained by the...
Optical bistable switching with Kerr nonlinear materials exhibiting a finite response time in two-dimensional photonic crystals
, Article Volume 7713 ; Proceedings of SPIE - The International Society for Optical Engineering, 12 April 2010 through 15 April 2010 , 2010 ; 0277786X (ISSN) ; 9780819481863 (ISBN) ; Monem Haghdoost, Z ; Abediasl, H ; Khorasani, S ; Mehrany, K ; Sharif University of Technology
2010
Abstract
Effect of relaxation time on the performance of photonic crystal optical bistable switches based on Kerr nolinearity is discussed. This paper deals with optical pulses with the duration of about 50 ps. In such cases the steady state response of the optical device can be used to approximate the pulse evolution if the nonlinearity is assumed instantaneous, hence analytical solutions such as the coupled mode theory can be used to obtain the time evolution of the electromagnetic fields. However if the relaxation time of the material nonlinear response is also considered, changes in the power levels and in the shape of the hystersis loop is observed. In this case, we use the nonlinear finite...
An analytical approach for evaluating the optical spectrum emitted from a strongly-coupled single quantum-dot photonic-crystal cavity system
, Article Proceedings of SPIE - The International Society for Optical Engineering, 26 January 2010 through 28 January 2010 ; January , 2010 , Volume 7609 ; 0277786X (ISSN) ; 9780819480057 (ISBN) ; Chalabi, H. R ; Miri, M ; Bayat, M ; Khorasani, S ; Sharif University of Technology
2010
Abstract
A theory is presented for the quantum radiation emitted from a single exciton in a quantum dot. We assume that the quantum dot is in strong coupling to a slab photonic crystal cavity. A dielectric function of spatial coordinates is used to explain the effects of the macroscopic medium. It has been proved that the electric field in such a medium can be described using the so-called K-function. We derive a formula for obtaining the frequency spectrum, and present an analytical result for the optical spectrum, which is dependent on the K-function. We also have considered a slab photonic crystal configuration with hexagonal structure containing a cavity to evaluate the frequency spectrum in such...