All Stories

  1. Thermodynamic properties of confined electron gas in InP/InAs/InP nanowire heterostructures with n- and p-type dopants
  2. Lattice mismatch, pressure and temperature effects on linear and nonlinear optical properties of InAs nanodots embedded in InAsP nanowires
  3. Quantum shape effects and influence of electric fields on energy levels and thermodynamic properties of electron gas in semiconductor nanowires
  4. Thermodynamic and magnetic properties of cylindrical of nanoshell GaAsMn considering Rashba spin orbit coupling
  5. Strain, pressure and temperature effects on linear and nonlinear optical properties of InP/InAs1−xPx/InP quantum well heterostructures
  6. Effect of Hydrostatic Pressure and Temperature on Thermodynamic Properties of Electron Gas in Narrow Bandgap Semiconductor Nanowires
  7. Energy Levels of Nanodots Inside Semiconductor Nanowires
  8. Unraveling the effects of non-parabolicity on electron energy levels in InP/InAs/InP heterostructures
  9. Entropy of electron gas in semiconductor nanowires
  10. Thermodynamic Properties of Electron Gas in Semiconductor Nanowires
  11. Influence of nonparabolicity of the dispersion law and temperature on the energy density of states in semiconductor nanowires
  12. Concentration, thermodynamic density of states, and entropy of electrons in semiconductor nanowires
  13. Energy Levels in Nanowires and Nanorods with a Finite Potential Well
  14. Electron Energy in Rectangular and Cylindrical Quantum Wires