RIBLET P, TANAKA S, RAMVALL P. Size-dependent optical non-linearities in GaN quantumdots [J]. Solid State Communications, 1999(6):377-381.doi:10.1016/S0038-1098(98)00574-2.
[2]
NANDAKUMAR P, VIJAYAN C, MURTI Y V G S. Quantum size effects on the third-order optical nonlinearity of CdS quantum dots in Nafion [J]. Optics Communications, 2000, (15):457-465.doi:10.1016/S0030-4018(00)01009-9.
[3]
ESAKI L, TSU R. Superlattice and negative differential conductivity in semiconductors [J]. IBM Journal of Research and Development, 1970.61-65.
[4]
ZHANG Li. Studies on the third-order nonlinear optical properties of a quantum dot quantum well [J]. Acta Sinica Quantum Opt, 2004(1):5-10.doi:10.3969/j.issn.1007-6654.2004.01.002.
[5]
DARIES B R S, NAVANEETHAKRISHNAN K. Donor binding energies and spin-orbit coupling in aspherical quantum dot [J]. Solid State Communications, 2004, (11):773-776.doi:10.1016/j.ssc.2004.02.053.
LIU Li-ming, LI Jun-jie, XIONG Gui-guang. Studies of the third-order nonlinear optical susceptibility for InxGa1-xN/GaN cylinder quantum dots [J]. physica E, 2005(4):466-471.doi:10.1016/j.physe.2004.07.017.
[9]
GUO Kang-xian, YU You-bin. Nonlinear optical susceptibilities in Si/SiO2 parabolic quantum dots [J]. Chinese Journal of Physics, 2005(5):932-941.
[10]
YOFFE A D. Semiconductor quantum dots and related systems:Electronic, optical, luminescence and related properties of low dimensional systems [J]. Advances in Physics, 2001(1):1-208.doi:10.1080/00018730010006608.
SHEN Yuan-rang. The principles of nonlinear optics [M]. New York:wiley, 1984.35-68.
[13]
VIJAYALAKSHMI S, GREBEL H, YAGLIOGLU G. Nonlinear optical response of si nanostructures in a ailica matrix [J]. Journal of Applied Physics, 2002, (11):6418-6422.doi:10.1063/1.1323511.