TY - JOUR
T1 - Spectral radiative properties of two-dimensional rough surfaces
AU - Xuan, Yimin
AU - Han, Yuge
AU - Zhou, Yue
PY - 2012/12
Y1 - 2012/12
N2 - Spectral radiative properties of two-dimensional rough surfaces are important for both academic research and practical applications. Besides material properties, surface structures have impact on the spectral radiative properties of rough surfaces. Based on the finite difference time domain algorithm, this paper studies the spectral energy propagation process on a two-dimensional rough surface and analyzes the effect of different factors such as the surface structure, angle, and polarization state of the incident wave on the spectral radiative properties of the two-dimensional rough surface. To quantitatively investigate the spatial distribution of energy reflected from the rough surface, the concept of the bidirectional reflectance distribution function is introduced. Correlation analysis between the reflectance and different impact factors is conducted to evaluate the influence degree. Comparison between the theoretical and experimental data is given to elucidate the accuracy of the computational code. This study is beneficial to optimizing the surface structures of optoelectronic devices such as solar cells.
AB - Spectral radiative properties of two-dimensional rough surfaces are important for both academic research and practical applications. Besides material properties, surface structures have impact on the spectral radiative properties of rough surfaces. Based on the finite difference time domain algorithm, this paper studies the spectral energy propagation process on a two-dimensional rough surface and analyzes the effect of different factors such as the surface structure, angle, and polarization state of the incident wave on the spectral radiative properties of the two-dimensional rough surface. To quantitatively investigate the spatial distribution of energy reflected from the rough surface, the concept of the bidirectional reflectance distribution function is introduced. Correlation analysis between the reflectance and different impact factors is conducted to evaluate the influence degree. Comparison between the theoretical and experimental data is given to elucidate the accuracy of the computational code. This study is beneficial to optimizing the surface structures of optoelectronic devices such as solar cells.
KW - BRDF
KW - Correlation analysis
KW - FDTD
KW - Rough surface
KW - Spectral radiative property
UR - https://www.scopus.com/pages/publications/84886725268
U2 - 10.1007/s10765-012-1349-z
DO - 10.1007/s10765-012-1349-z
M3 - 文章
AN - SCOPUS:84886725268
SN - 0195-928X
VL - 33
SP - 2291
EP - 2310
JO - International Journal of Thermophysics
JF - International Journal of Thermophysics
IS - 12
ER -