Dynamics of the Dirac Particle in an Anisotropic Rainbow Universe
Abstract
(ϵ=0.9) is rapidly decreasing faster than in ϵ=0.6 and ϵ=0.3.
Keywords
References
- [1] Nyambuya G. G., General Spin Dirac Equation (II), Journal of Modern Physics, 4 (2013) 1050-1058.
- [2] Tokmehdashi H., Rajabi A.A., Hamzavi M., Dirac Equation with Mixed Scalar–Vector–Pseudoscalar Linear Potential under Relativistic Symmetries, Zeitschrift für Naturforschung A, 70 (2015) 713-720.
- [3] Rubinow S. I., Joseph B. K., Asymptotic Solution of the Dirac Equation, Phys. Rev., 87 (1963) 2789-2796.
- [4] Thaller B., The Dirac Equation, Texts and Monographs in Physics. 1nd ed. Berlin, (1992).
- [5] Hassanabadi H., Zare S., Montigny, M., Relativistic spin-zero bosons in a Som–Raychaudhuri space–time, Gen. Relat. Grav., 50 (2018) 104-129.
- [6] Mozaffari F.S., Hassanabadi H., Sobhani H., Chung J., Investigation of the Dirac Equation by Using the Conformable Fractional Derivative, Korean Phys. Soc., 72 (2018) 987-990. [7] Sargolzaeipor S., Hassanabadi H., Chung W.S., Superstatistics of the Klein–Gordon equation in deformed formalism for modified Dirac delta distribution, Mod. Phys. Lett. A, 33 (2018) 1850060-1850071.
- [8] Sogut K., Salti M., Aydogdu O., Quantum dynamics of the photon in rainbow gravity, Annals of Physics, 431 (2021) 168556-168566.
- [9] Bakke K., Mota H., Aharonov–Bohm effect for bound states in the cosmic string spacetime in the context of rainbow gravity, General Relativity, and Gravitation, 52 (2020) 52-67. [10] Junior E.L.B., Rodrigues M.E., Regular black holes in Rainbow Gravity, Nuclear Physics B, 961 (2020) 15244-15258.
- [11] Ling Y., Song H., Hongbao Z., The Kinematics of Particles Moving in Rainbow Spacetime, Modern Physics Letters A, 22 (2007) 2931–2938.
- [12] Lobo I.P., Christian P., Reaching the Planck scale with muon lifetime measurements, Phys. Rev. D, 103, (2021) 106025-106033.