Zakharian Armis, Mansuripur Masud, Moloney Jerome
Opt Express. 2005 Apr 4;13(7):2321-36. doi: 10.1364/opex.13.002321.
Using the Finite-Difference-Time-Domain (FDTD) method, we compute the electromagnetic field distribution in and around dielectric media of various shapes and optical properties. With the aid of the constitutive relations, we proceed to compute the bound charge and bound current densities, then employ the Lorentz law of force to determine the distribution of force density within the regions of interest. For a few simple cases where analytical solutions exist, these solutions are found to be in complete agreement with our numerical results. We also analyze the distribution of fields and forces in more complex systems, and discuss the relevance of our findings to experimental observations. In particular, we demonstrate the single-beam trapping of a dielectric micro-sphere immersed in a liquid under conditions that are typical of optical tweezers.
我们使用时域有限差分(FDTD)方法来计算各种形状和光学特性的电介质内部及其周围的电磁场分布。借助本构关系,我们进而计算束缚电荷和束缚电流密度,然后运用洛伦兹力定律来确定感兴趣区域内的力密度分布。对于存在解析解的几个简单情况,发现这些解与我们的数值结果完全一致。我们还分析了更复杂系统中的场和力的分布,并讨论了我们的发现与实验观测结果的相关性。特别是,我们展示了在光镊典型条件下对浸没在液体中的介电微球进行单光束捕获的情况。