Scalar-Interchange Potential and Magnetic/Thermodynamic Properties of Graphene-like Materials

Journal Title: JOURNAL OF ADVANCES IN PHYSICS - Year 0, Vol 9, Issue 2

Abstract

By means of numerical simulations, we explore possible influence of geometric deformations on magnetic graphene-like systems. As an efficient and economic method to take the geometrical effects into account, in addition to the electromagnetic interaction, we introduce an extra interaction transmitted by a massive scalar, associated to the Kekuldeformations. As a result, one meets a new potential interaction term, which affects the properties of the nano-surface. Monte Carlo analysis enables one to analyze the behavior of the system under variation of the external magnetic field, of the temperature, and also on the inverse of the mass of the extra scalar boson, which characterizes the typical length scale of geometric deformations. Our analysis is based on the spin configurations and includes evaluating magnetization, magnetic susceptibility and the specific heat in the presence of the Kekul-induced new potential.

Authors and Affiliations

Elena Konstantinova, Ricardo Spagnuolo Martins, José Abdalla Helayel-Neto

Keywords

Related Articles

Assessment of Radioactivity in Various Types of Soil From Al-Obour City, Egypt.

The distributions of natural radioactivity in various types of samples collected from several areas in Al-Obour city were determined using a high purity germanium (HPGe) detector. Four types of samples were investigated:...

The Theory of The Nuclear Universe and The Secret of The Supernova

This article is a deep, logical and rational analysis of the three original nuclear and chemical elements of the architecture of the nuclear universe, and which give superconducting motion to the solar system and galax...

Similarity in Analytic Behavior Intermediate Radial States of the Hydrogen Atom & Production of Radionuclides and Gamma Decay

The purpose of this paper is to show that analytic behavior of ground and intermediate states of the Hydrogen atom is similar to Gamma decay in molybdenum-99 (99mTc → 99Tc + γ).

Few possible models for 19.9%efficient

: Device modeling and simulation studies of a CIGS thin film solar cell have been carried out using SCAPS 2902. A variety of graded band gap structures of efficiency around 19.9% are examined. The study shows that materi...

Optical And Electrical Properties of PVA/A-Al2O3 Nanocomposite Films

In the present study, a-Al2O3 nanoparticles were synthesized using the citrate-nitrate auto combustion method. Nanocomposites of PVA/a-Al2O3 were intended by solution casting technique. The micrograph of samples were ana...

Download PDF file
  • EP ID EP653759
  • DOI 10.24297/jap.v9i2.1395
  • Views 91
  • Downloads 0

How To Cite

Elena Konstantinova, Ricardo Spagnuolo Martins, José Abdalla Helayel-Neto (0). Scalar-Interchange Potential and Magnetic/Thermodynamic Properties of Graphene-like Materials. JOURNAL OF ADVANCES IN PHYSICS, 9(2), 2401-2409. https://europub.co.uk/articles/-A-653759