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Effect of arbitrary temperature degeneracy and ion magnetization on shear Alfven waves in electron-positron-ion plasmas
Authors:A. Safdar  A. Mushtaq  M. Ikram  Zulfiqar Ahmad  Syeda R. Batool
Affiliation:1. Department of Physics, FBAS, International Islamic University (IIUI), Islamabad, Pakistan;2. Department of Physics, Hazara University, Mansehra, Pakistan;3. Department of Physics, Abdul Wali Khan University Mardan, Mardan, Pakistan
Abstract:Linear properties of low-frequency electromagnetic shear Alfven waves (SAWs) are studied in quantum electron-positron-ion plasmas with effect of arbitrary temperature degeneracy for magnetized (urn:x-wiley:08631042:media:ctpp202000073:ctpp202000073-math-0001) and unmagnetized (urn:x-wiley:08631042:media:ctpp202000073:ctpp202000073-math-0002 urn:x-wiley:08631042:media:ctpp202000073:ctpp202000073-math-0003) ions by using the quantum hydrodynamic model. Dispersion relations are derived for nearly degenerate (urn:x-wiley:08631042:media:ctpp202000073:ctpp202000073-math-0004) and nearly non-degenerate (urn:x-wiley:08631042:media:ctpp202000073:ctpp202000073-math-0005) plasmas. Bohm potential due to density correlation and temperature degeneracy due to Fermi–Dirac statistics of electron–positron, and their effects on the dispersion of SAWs are studied in detail both analytically and numerically. The relevance of the work regarding dense astrophysical plasmas is highlighted.
Keywords:dense astrophysical bodies  dispersion relations  electromagnetic shear Alfven wave  quantum electron-positron-ion plasmas  quantum hydrodynamic model
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