Quantum confined stark effect on the linear and nonlinear optical properties of sige/si semi oblate and prolate quantum dots grown in si wetting layer


Abstract:

We have studied the parallel and perpendicular electric field effects on the system of SiGe prolate and oblate quantum dots numerically, taking into account the wetting layer and quantum dot size effects. Using the effective-mass approximation in the two bands model, we computationally calculated the extensive variation of dipole matrix (DM) elements, bandgap and non-linear optical properties, including absorption coefficients, refractive index changes, second harmonic generation and third harmonic generation as a function of the electric field, wetting layer size and the size of the quantum dot. The redshift is observed for the non-linear optical properties with the increasing electric field and an increase in wetting layer thickness. The sensitivity to the electric field toward the shape of the quantum dot is also observed. This study is resourceful for all the researchers as it provides a pragmatic model by considering oblate and prolate shaped quantum dots by explaining the optical and electronic properties precisely, as a consequence of the confined stark shift and wetting layer.

Año de publicación:

2021

Keywords:

  • Absorption coefficient (AC)
  • electric field
  • Prolate quantum dot (QD)
  • Oblate quantum dot (QD)
  • Second harmonic generation (SHG)

Fuente:

scopusscopus

Tipo de documento:

Article

Estado:

Acceso abierto

Áreas de conocimiento:

  • Óptica no lineal
  • Nanostructura
  • Ciencia de materiales

Áreas temáticas:

  • Física
  • Electricidad y electrónica
  • Ingeniería y operaciones afines