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Information Journal Paper

Title

THE THERMODYNAMIC PROPERTIES OF POLARIZED METALLIC NANOWIRE IN THE PRESENCE OF MAGNETIC FIELD

Pages

  34-40

Abstract

 In this article, the SECOND QUANTIZATION method has been used to investigate some thermodynamic properties of spin-polarized METALLIC NANOWIRE with radius 5 and 10 nm and infinite length, in the presence of magnetic field at zero temperature. The SPIN-POLARIZATION parameter corresponding to the equilibrium state of the system has been plotted as a function of density for different values of the magnetic field. We have concluded that for the magnetic fields less than 100T at high densities, the system nearly becomes unpolarized. However, for higher magnetic fields, the system has a substantial SPIN-POLARIZATION, even at high densities. Finally, we have calculated the pressure and incompressibility vs. the density for different values of the magnetic field.

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  • Cite

    APA: Copy

    BORDBAR, G.H., SHAHSAVAR, L., & SADEGHIPOUR, M.. (2013). THE THERMODYNAMIC PROPERTIES OF POLARIZED METALLIC NANOWIRE IN THE PRESENCE OF MAGNETIC FIELD. PHYSICAL CHEMISTRY RESEARCH, 1(1), 34-40. SID. https://sid.ir/paper/333840/en

    Vancouver: Copy

    BORDBAR G.H., SHAHSAVAR L., SADEGHIPOUR M.. THE THERMODYNAMIC PROPERTIES OF POLARIZED METALLIC NANOWIRE IN THE PRESENCE OF MAGNETIC FIELD. PHYSICAL CHEMISTRY RESEARCH[Internet]. 2013;1(1):34-40. Available from: https://sid.ir/paper/333840/en

    IEEE: Copy

    G.H. BORDBAR, L. SHAHSAVAR, and M. SADEGHIPOUR, “THE THERMODYNAMIC PROPERTIES OF POLARIZED METALLIC NANOWIRE IN THE PRESENCE OF MAGNETIC FIELD,” PHYSICAL CHEMISTRY RESEARCH, vol. 1, no. 1, pp. 34–40, 2013, [Online]. Available: https://sid.ir/paper/333840/en

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