Monolayer phosphorene under time-dependent magnetic field

We obtain the exact wave function of a monolayer phosphorene under a low-intensity time-dependent magnetic field using the dynamical invariant method. We calculate the quantum-mechanical energy expectation value and the transition probability for a constant and an oscillatory magnetic field. For the...

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Veröffentlicht in:Physica. B, Condensed matter Condensed matter, 2018-02, Vol.531, p.85-89
Hauptverfasser: Nascimento, J.P.G., Aguiar, V., Guedes, I.
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Sprache:eng
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Zusammenfassung:We obtain the exact wave function of a monolayer phosphorene under a low-intensity time-dependent magnetic field using the dynamical invariant method. We calculate the quantum-mechanical energy expectation value and the transition probability for a constant and an oscillatory magnetic field. For the former we observe that the Landau level energy varies linearly with the quantum numbers n and m and the magnetic field intensity B0. No transition takes place. For the latter, we observe that the energy oscillates in time, increasing linearly with the Landau level n and m and nonlinearly with the magnetic field. The (k,l)→(n,m) transitions take place only for l=m. We investigate the (0,0)→(n,0) and (1,l) and (2,l) probability transitions. •Wave function of a monolayer phosphorene under time-dependent magnetic field.•We calculate the quantum-mechanical energy expectation value for the system.•We calculate the probability transitions between Landau levels for the system.
ISSN:0921-4526
1873-2135
DOI:10.1016/j.physb.2017.11.089