The Study of Simulation of the Interaction of Intense Femtosecond Laser with Neon Nanocluster

Habib Khalilpour; Hosein Ghafourian

Volume 3, Issue 2 , August 2021, Pages 9-18

https://doi.org/10.30473/jphys.2020.54852.1093

Abstract
  In the framework of the nanoplasma model, the interaction of intense femtosecond laser pulses with the nanometer sized neon clusters is studied. In this simulation, the expansion of a neon cluster irradiated by an intense femtosecond laser pulse with respect to ionization and heating process is investigated. ...  Read More

The Study of the Electronic Structure and Magnetic Properties of Co2TaGa Heusler Compound

Seyyed Mojtaba Alavisadr; Zohreh Dadigiv

Volume 3, Issue 2 , August 2021, Pages 19-26

https://doi.org/10.30473/jphys.2020.54277.1092

Abstract
  In the present work, by using the first-princilpes calculations within the density functional theory framework, the structural, electronic and magnetic properties of AlCu2Mn and CuHg2Ti crystal structures of the full-Heusler compound Co2TaGa were studied. The results indicate that the ground state of ...  Read More

Synthesis of RGO/Sio2 and RGO/Sio2/Fe3O4: Investigating its Structural, Magnetic Properties and Photocatalytic Activity on Methyl Orange Degradation

Fatemeh Ebrahimi Tazangi; Seyyedeh Hoda Hekmatara; Jamileh Seyedyazdi

Volume 3, Issue 2 , August 2021, Pages 27-34

https://doi.org/10.30473/jphys.2020.54205.1090

Abstract
  In this study, at first, reduced graphene oxide (RGO) has been synthesized by Hummers’ method and then RGO/SiO2 binary compound and finally RGO/SiO2/Fe3O4 ternary compound were synthesized by co-precipitation method. Magnetic properties of nanoparticles were investigated by VSM and their morphology ...  Read More

Interactional Effects of Molecular Surrounding Environment on the Third Order Nonlinear Optical Properties

Mahsa Khadem Sadigh

Volume 3, Issue 2 , August 2021, Pages 35-40

https://doi.org/10.30473/jphys.2020.51857.1087

Abstract
  The aim of this experimental study is investigating the interactional effects of molecular surrounding environment on its third order nonlinear optical properties. In this case, the nonlinear behavior of an azo dye in different concentrations of three various groups of solvents with strong hydrogen bond ...  Read More

Investigation of the Photocatalytic Property of Doped Molybdenum Disulfide Nanostructure with Copper

Fatemeh Sharafi; Parvaneh Iranmanesh

Volume 3, Issue 2 , August 2021, Pages 41-50

https://doi.org/10.30473/jphys.2020.54093.1088

Abstract
  In this study, hydrothermal method was used to synthesize Pure molybdenum disulfide and doped molybdenum disulfide with copper. XRD, FTIR, UV-VIS, TEM analysis was used to identify the structural and morphological properties of the samples. The Fourier transform infrared spectrum well showed the formation ...  Read More

Investigation of Optical Properties of Ellipsoidal Metal Nanoparticles at Different Scales and Dielectric Environments

Majid Ebrahimzadeh; Massomeh Salaki

Volume 3, Issue 2 , August 2021, Pages 51-62

https://doi.org/10.30473/jphys.2020.55521.1094

Abstract
  Plasmonic science has been noticed by researchers, with the increasing development of knowledge and technology in nanometer dimensions. Gold and silver ellipsoidal metal nanoparticles can exhibit unique optical properties due to their ellipsoidal structure with special symmetry and are therefore very ...  Read More

Simulation of OR telecommunication logic gate with two-dimensional photonic crystal

Mehdi Pezeshkian; Hossein Shahmirzaei

Volume 3, Issue 2 , August 2021, Pages 63-74

https://doi.org/10.30473/jphys.2020.56674.1098

Abstract
  In this paper, a complete study has been done in the field of optical crystal logic gates. Also, several gates have been designed and simulated in the ultraviolet and infrared wavelengths (wavelength range of 1500 nm). In all cases, the boundary conditions of the complete absorber are considered. First, ...  Read More

Numerical Investigation of the Fading Effect of an Interferometric Holographic Calorimeter Response by numerical method

Amirmohammad Beigzadeh; MohammadReza BaSaadat; Mohammad Reza Rashidian Vaziri

Volume 3, Issue 2 , August 2021, Pages 75-80

https://doi.org/10.30473/jphys.2021.57254.1099

Abstract
  The operation principle of calorimeters used for dosimetry of ionizing radiations is based on measuring the induced temperature difference in the adsorbent due to thermal energy deposition of the ionization radiation. In recent years, one of these methods has been the holographic optical calorimetry ...  Read More

Investigation of Electronic structure, Magnetic and Optical Properties of Cr2ScSb Full-Heusler Compound

Fatemeh Karami

Volume 3, Issue 2 , August 2021, Pages 81-88

https://doi.org/10.30473/jphys.2020.55663.1095

Abstract
  on density functional theory the electronic, magnetic and optical properties of the Cr2ScSb full-Heusler compound have been investigated. This compound has half-metallic gap of 0.07 eV at equilibrium lattice constant, but there is no band gap in the band structure.Cr2ScSb is stable in ferromagnet state. ...  Read More

Synthesis and characterization of rGO-TiO2-Fe3O4(GTF) magnetic photocatalyst

Nazanin Morovatnejad; Seyyedeh Hoda Hekmatara; Jamileh Seyedyazdi

Volume 3, Issue 2 , August 2021, Pages 89-95

https://doi.org/10.30473/jphys.2020.54207.1091

Abstract
  In this study, iron-oxide (magnetite) synthesized by co-precipitation method and binary TiO2-Fe3O4 and ternary rGO-TiO2-Fe3O4 nanocomposites (called GTF) prepared by hydrothermal method. Crystal structure and bonds, studied by X-ray diffraction (XRD) and FTIR analysis respectively. The morphology of ...  Read More

Investigation of the Electronic, Magnetic and Optical Properties of PtFeBi Half-Heusler Aand Its (001) Surfaces by Density Functional Theory Method

Hamed Rezazadeh; Mohamadreza Hantehzadeh; Arash Boochani

Volume 3, Issue 2 , August 2021, Pages 97-104

https://doi.org/10.30473/jphys.2021.62028.1102

Abstract
  We predicted that half-Heusler alloy PtFeBi is a potential candidate for using in spintronic and optoelectronic devices. By using first principle calculations based on density functional theory (DFT) within generalized gradient approximation (GGA), we studied the structural, electronic, magnetic and ...  Read More

Investigation of Defect Modes in Symmetric 1-D Ternary Photonic Crystal

Marzieh Dadkhah; Tooraj Ghaffary

Volume 3, Issue 2 , August 2021, Pages 105-113

https://doi.org/10.30473/jphys.2020.56501.1096

Abstract
  In this paper, we investigate a 1-D ternary photonic crystal (1-DTPC), with symmetric geometry. The defect modes for both TE and TM polarization are investigated by variation of wavelength. In this case, there are two resonant peaks within the photonic bandgap (PBG) which corresponds to the so-called ...  Read More