22 research outputs found
Generalized Uncertainty Principle, Modified Dispersion Relation and Barrier penetration by a Dirac particle
We have studied the energy band structure of a Dirac particle in presence of
a generalised uncertainty principle (GUP). We start from defining a modified
momentum operator and derive corresponding modified dispersion relation (MDR)
and GUP. Apart from the forbidden band within the range , being the
mass of the particle, we find the existence of additional forbidden bands at
the both ends of the spectrum. Such band structure forbids a Dirac particle to
penetrate a potential step of sufficient height (, being Planck
energy). This is also true for massless particle. Unlike the relativistic case,
a massless particle also can reflect from a barrier of sufficient height.
Finally we discuss about the Klein's paradox in presence of the GUP.Comment: 10 pages, 7 figures, LaTe
Dirac Equation with Spin Symmetry for the Modified P\"oschl-Teller Potential in -dimensions
We present solutions of the Dirac equation with spin symmetry for vector and
scalar modified P\"oschl-Teller potential within framework of an approximation
of the centrifugal term. The relativistic energy spectrum is obtained using the
Nikiforov-Uvarov method and the two-component spinor wavefunctions are obtain
are in terms of the Jacobi polynomials. It is found that there exist only
positive-energy states for bound states under spin symmetry, and the energy
levels increase with the dimension and the potential range parameter .Comment: 9 pages and 1tabl
Bound state solutions of Klein–Gordon equation with Mobius square plus Yukawa potentials
Fermionic particles with position-dependent mass in the presence of inversely quadratic Yukawa potential and tensor interaction
Klein-Gordon Oscillator Under the Effects of the Cornell-Type Interaction in the Kaluza-Klein Theory
Scalar bosons under the influence of noninertial effects in the cosmic string spacetime
In this paper we present two different classes of solutions for the
Klein-Gordon equation in the presence of a scalar potential under the influence
of noninertial effects in the cosmic string spacetime. We show that noninertial
effects restrict the physical region of the spacetime where the particle can be
placed, and furthermore that the energy levels are shifted by these effects. In
addition, we show that the presence of a Coulomb-like scalar potential allows
the formation bound states when the Klein-Gordon equation is considered in this
kind of spacetime
