Lattery Dustin M, Kim Mingeon, Choi Jongin, Lee Bong Jae, Wang Xiaojia
Department of Mechanical Engineering, University of Minnesota, Minneapolis, MN, 55455, USA.
Department of Mechanical Engineering, Korea Advanced Institute of Science and Technology, Daejeon, 34141, South Korea.
Sci Rep. 2018 Sep 17;8(1):13896. doi: 10.1038/s41598-018-32265-w.
With the advent of new nanomanufacturing techniques has come the rise of the field of nanophotonics and an increased need to determine optical properties of novel structures. Commercial software packages are able to estimate the behavior, but require large resources and heavy computational time. By combining coordinate transforms and Effective Medium Theory (EMT), an effective relative permittivity tensor is defined and further exploited to calculate the polarization-coupled Fresnel coefficients through Maxwell's equations. A uniaxial simplification is made to show the case of tilted nanorod arrays. To demonstrate the flexibility of this system, the interfacial reflectance has been calculated for both s- and p-polarizations as well as the coupled case with the volume filling fractions of f = 0.10 and 0.30 for silver (Ag) and titanium (Ti) nanorods, and a scenario of a Ag nanorod array with polymethyl methacrylate (PMMA) as the surrounding medium. The exact results computed by the finite-difference time-domain method justify the validity of EMT with polarization coupling taken into account. The effects of incidence angle and azimuthal angle on reflectance are also discussed. The relatively simple nature of this approach allows for fast estimations of the optical properties of various nanostructures.
随着新的纳米制造技术的出现,纳米光子学领域兴起,并且越来越需要确定新型结构的光学特性。商业软件包能够估算其行为,但需要大量资源和较长的计算时间。通过结合坐标变换和有效介质理论(EMT),定义了一个有效的相对介电常数张量,并进一步利用它通过麦克斯韦方程组计算偏振耦合的菲涅耳系数。进行单轴简化以展示倾斜纳米棒阵列的情况。为了证明该系统灵活性,已针对s偏振和p偏振以及银(Ag)和钛(Ti)纳米棒的体积填充率f = 0.10和0.30的耦合情况,以及以聚甲基丙烯酸甲酯(PMMA)为周围介质的Ag纳米棒阵列的情况计算了界面反射率。通过时域有限差分法计算得到的精确结果证明了考虑偏振耦合的EMT的有效性。还讨论了入射角和方位角对反射率的影响。这种方法相对简单的特性使得能够快速估算各种纳米结构的光学特性。