Title :
First-principle study on optical properties of spherical and cylindrical hydrogen-passivated si nanoparticles with different sizes
Author :
Yinglong Wang ; Chao Chen ; Zhuanhua Wu ; Weihua Liang ; Xiuli Wang ; Xuecheng Ding ; Lizhi Chu ; Zechao Deng ; Jinzhong Chen ; Guangsheng Fu
Author_Institution :
Coll. of Phys. Sci. & Technol., Hebei Univ., Baoding, China
fDate :
1/1/2011 12:00:00 AM
Abstract :
To investigate the size dependence of the optical properties of the hydrogen-passivated Si nanoparticles (Hp-SiNPs), the energy bands and optical dielectric functions for two types of nanostructures, that is, the spherical Hp-SiNPs (SHp-SiNPs) with various diameters and the cylindrical Hp-SiNPs (CHp-SiNPs) with the same cross-section and various heights are calculated by using CASTEP software package based on density functional theory under generalised gradient approximation. The results show that for both SHp-SiNPs and CHp-SiNPs, the bandgaps increase, and the optical absorption edges of imaginary part of dielectric functions demonstrate blue-shifts as the sizes of Hp-SiNPs are reduced, which are consistent with the previous experimental data and theoretical conclusions. For CHp-SiNPs, the optics dielectric function behaves anisotropically owing to the geometrical anisotropy.
Keywords :
ab initio calculations; density functional theory; dielectric function; elemental semiconductors; energy gap; gradient methods; nanofabrication; passivation; silicon; spectral line shift; CASTEP software package; Si; band gap; blue shift; density functional theory; energy band; first principle study; generalised gradient approximation; hydrogen-passivated nanoparticles; optical dielectric functions;
Journal_Title :
Micro & Nano Letters, IET
DOI :
10.1049/mnl.2010.0100