Espalhamento quântico unidimensional via mecânica quântica supersimétrica
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2017-03-03
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Universidade Federal do Maranhão
Resumo
In this work, we study the formalism of the supersimmetric quantum mechanics (SUSY
QM) starting with hamiltonian fatorization method of the bosonic harmonic oscillator
(BHO) by means of ladders operators and we extended to hamiltonian of oscillators
in general, inclusive of the fermionic harmonic oscillator (FHO), with their respective
properties. We show that the SUSY QM for bound states, connect hamiltonians, potentials,
and eigenvalues energy of different systems which are called supersymmetric partners.
In the case scattering states, we notice that SUSY QM applies only in shape invariant
potentials (SIPs). Despite this restriction, the SIPs are commonly used in literature by
its wide applicability as in particles physics as in condensed matter. Therefore, we study
the scattering states to the problem of massive relativistic fermions under the influence
of modified Pöschl-Teller potential (PT), which is shape invariant. We calculate the
transmission (T) and reflection (R) coefficients, just knowing the superpotential, which
was carried out in a simple and elegant form. Thus, the study of the quantum scattering
via SUSY QM becomes a powerful tool in the calculations of T and R.
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Espalhamento quântico, Mecânica quântica, Mecânica quântica supersimétrica, Potenciais invariantes de forma, Supersimetria, Quantum scattering, Quantum mechanics, Supersimmetric quantum mechanics, Shape invariant potentials
Citação
SOARES, Camila Correia. Espalhamento quântico unidimensional via mecânica quântica supersimétrica. 2017. 91 f. Dissertação (Programa de Pós-Graduação em Física) - Universidade Federal do Maranhão, São Luís 2017.