DocumentCode :
3172886
Title :
Electronic structure of GaxAl1-xSb alloys by empirical pseudopotential method
Author :
Patel, Nishant N. ; Joshi, K.B.
Author_Institution :
ML Sukhadia Univ., Udaipur
fYear :
2007
fDate :
16-20 Dec. 2007
Firstpage :
403
Lastpage :
405
Abstract :
Electronic band structure calculations are reported for the GaxAl1-xSb alloys using empirical pseudopotential method within the virtual crystal approximation. The calculations show that the system of GaxAl1-xSb alloys consists of multiple valley conduction bands. The Gamma-L crossover is found for the Ga0.74Al0.26Sb alloy well in agreement with the experimental findings. The conduction band minimum (CBM) has been observed to switch at the (0.87,0,0) point for Ga0.51Al0.49Sb. The CBM shifts to the X point for Ga0.21Al0.79Sb alloy and remains at X leading Anally to indirect band gap in AlSb. The calculations have been used to report bowing parameters EX and EL for the alloys. Our findings may be useful to select the materials in a range of composition to examine the bowing parameter EX and effective mass experimentally to design low dimensional quantum systems. Refractive indices for all the alloys are also calculated for possible comparison with experiments to appear in future.
Keywords :
band structure; gallium compounds; refractive index; GaAlSb; bowing parameters; conduction band minimum; electronic band structure; empirical pseudopotential method; refractive indices; virtual crystal approximation; Composite materials; Effective mass; Gallium alloys; III-V semiconductor materials; Lattices; Lead; Photonic band gap; Semiconductivity; Semiconductor materials; Switches; Gallium alloys; Quantum theory; Semiconductor device modeling; Semiconductor materials;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Physics of Semiconductor Devices, 2007. IWPSD 2007. International Workshop on
Conference_Location :
Mumbai
Print_ISBN :
978-1-4244-1728-5
Electronic_ISBN :
978-1-4244-1728-5
Type :
conf
DOI :
10.1109/IWPSD.2007.4472533
Filename :
4472533
Link To Document :
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