Liubov Lokot - Exciton bleaching and electron teleportation driven by magnetic field in dilute GaAs(N) quantum wells

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      Abstract:

      The Hamiltonian for two harmonic oscillators in the basic of   angular momentum j=1/2 and magnetic quantum numbers   m_{j}=1/2,-1/2 is build. Proportion coefficient are expressed by   means of Clebsh-Gordan coefficient. It is shown that formalism   may be applicable at the explaining of deformation dependence of   the fundamental band gap of dilute GaInNAs. It is shown that   formalism allows to predict the magnetic Coulomb levels near   anticrossing point which are created at the generation two   conduction band (Delta_{c1} and Delta_{c3}) in GaN/AlN quantum   wells. The two solutions in the dispersion equation which lead to   a duality of conduction band with highly nonparabolic stage are   found. The additional optical transitions are found. The bound   states at the research of transitions of discrete spectrum into   the continuous state are found. The analytical expression of   Landau quantization in dilute GaAsN and their wave vectors are   found. It is shown that the consideration of dilute GaAsN is   united with the research of 1D periodical crystal in the   direction of perpendicular to the magnetic field. In the article   the conduction bands of dilute GaAsN, in the case when   $m^{(2)}\rightarrow\ \infty$ are studied. For 0.1 % N with 0.2 eV   localized N-impurity level with respect of edge conduction band   and hybridization between extended states of semiconductor matrix   and orbits of N atoms occurs at $k=6*10^{8}\,\textrm{m}^{-1}$   calculated from Brillouin zone center, need to apply of magnetic   field of 15.4 T, in order to tune an electron into a given k   state. Thus it is shown, that the formalism can be used in the   magnetotunneling spectroscopy researches. In this paper, we   present microscopic calculations of the absorption spectra for   GaN/Al(x)Ga(1-x)N quantum well systems. Whereas quantum well   structures with parabolic law of dispersion exhibit the usual   bleaching of the exciton resonance without shifting spectral   position, a significant red-shift of the exciton peak is found   with increasing electron-hole gas density for wurtzite quantum   well. Electron and photon teleportation in quantum spectroscopy   researches associates with a significant red-shift of the exciton   peak in materials with complex dispersion. The energy of the   exciton resonance for the wurtzite quantum well is found. The   obtained results can be explained by an influence of the valence   band structure on quantum confined effects. The optical gain   spectrum in Hartree-Fock approximation is calculated. Sommerfeld   enhancement is calculated. The red shift of the gain spectra in   Hartree-Fock approximation with respect to Hartree gain spectra   is calculated. The entanglements of doubled conduction band one   can lead into electron teleportation, quantum cryptography and   artificial intelligence researches.

      Address (URL): https://communities.acs.org/people/LiubovLokot/content