Balakin A V, Bushuev V A, Mantsyzov B I, Ozheredov I A, Petrov E V, Shkurinov A P, Masselin P, Mouret G
Department of Physics and International Laser Center, M. V. Lomonosov Moscow State University, Moscow 119899, Russia.
Phys Rev E Stat Nonlin Soft Matter Phys. 2001 Apr;63(4 Pt 2):046609. doi: 10.1103/PhysRevE.63.046609. Epub 2001 Mar 27.
We analyze theoretically and study experimentally the mechanisms of enhancement of the sum frequency and second harmonic generation in a finite one-dimensional photonic band gap structure with second order nonlinearity under Bragg diffraction conditions. It is shown that, near the photonic band gap edge, the efficiency of conversion in sum frequency and second harmonic generation processes can be significantly enhanced if two conditions are fulfilled simultaneously: grating assisted phase matching, or quasiphase matching, and an increase of the electromagnetic field density at the fundamental frequencies near the photonic band edges. The role of each mechanism is discussed.
我们从理论上进行分析,并通过实验研究了在布拉格衍射条件下具有二阶非线性的有限一维光子带隙结构中,和频与二次谐波产生增强的机制。结果表明,在光子带隙边缘附近,如果同时满足两个条件,和频与二次谐波产生过程中的转换效率可以显著提高:光栅辅助相位匹配,即准相位匹配,以及光子带隙边缘附近基频处电磁场密度的增加。文中讨论了每种机制的作用。