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Download Discussions with Einstein on Epistemological Problems in by Niels. Nonel Laureates in Physics. (Albert Einstein) BOHR PDF

By Niels. Nonel Laureates in Physics. (Albert Einstein) BOHR

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Approximation of effective mass in nanosystems. Physica Status Solidi B. 224, 285-291. , (2004). The effective mass method in nanosystems. Physical Review B. 62, 14408-14416. , (2010). Spectroscopy of semiconductor quantum dots. Phys‐ ics E. 42, 1549-1555. , (2013). Binding energy of the exciton of a spatially separated electron and hole in quasi-zero-dimensional semiconductor nanosystems. Technical Physics Letters. 39, 233-235. , (2013). On an exciton with a spatially separated electron and hole in quasi-zero-dimensional semiconductor nanosystems.

Most of such studies have treated and considered the spherical[26-28], lens shaped [29,30], square flat plated [31,32], and cylindrical [33,34] quantum dots. In the present chapter, we study the influence of the 3-D quantum confinement on the binding energy of the exciton (X), negative trion (X-), and the positive trion (X+) in a semiconductor cylindrical quantum dot manufactured in GaAs surrounded by Ga1-xAlxAs. Using a variational approach and the effective mass approximation with finite confinement – potential.

Photoluminescences of excitons in semiconductor nanocrystals. Physics Solid State. 31, 149 -152. , (2002). Progress development in semiconductor nanostructures. Physics Uspekhi. 172, 1068 - 1074. , (1998). Optical properties in semiconductor nanostructures. Semiconduc‐ tors. 32, 1-8. , (2010). Optical properties semiconductor quantum dots. Semiconductors. 44, 884-890. , Efros, Al. , Interband absorption light in semiconductor sphere. (1982). Sov. Phys. Semiconductors. 16, 955- 962. , (2004). Size quantization Stark effect in semiconductor quantum dots.

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