Aghaeipour Mahtab, Anttu Nicklas, Nylund Gustav, Berg Alexander, Lehmann Sebastian, Pistol Mats-Erik
Opt Express. 2015 Nov 16;23(23):30177-87. doi: 10.1364/OE.23.030177.
We compare the optical response of wurtzite and zinc blende GaP nanowire arrays for varying geometry of the nanowires. We measure reflectance spectra of the arrays and extract from these measurements the absorption in the nanowires. To support our experimental findings and to allow for more detailed investigations of the optical response of the nanowire arrays than possible in experiments, we perform electromagnetic modeling. This modeling highlights the validity of the extraction of the absorptance from reflectance spectra, as well as limitations of the extraction due to anti-reflection properties of the nanowires. In our combined experimental and theoretical study, we find for both zinc blende and wurtzite nanowires an absorption resonance that can be tuned into the ultraviolet by decreasing the diameter of the nanowires. This peak stops blue-shifting with decreasing nanowire diameter at a wavelength of approximately 330 nm for zinc blende GaP. In contrast, for the wurtzite GaP nanowires, the resonance continues blue-shifting at 310 nm for the smallest diameters we succeeded in fabricating. We interpret this as a difference in refractive index between wurtzite and zinc blende GaP in this wavelength region. These results open up for optical applications through resonant absorption in the visible and ultraviolet wavelength regions with both zinc blende and wurtzite GaP nanowire arrays. Notably, zinc blende and wurtzite GaP support resonant absorption deeper into the ultraviolet region than previously found for zinc blende and wurtzite InP and InAs.
我们比较了纤锌矿型和闪锌矿型GaP纳米线阵列在不同纳米线几何结构下的光学响应。我们测量了阵列的反射光谱,并从这些测量中提取纳米线的吸收情况。为了支持我们的实验结果,并能够比实验中更详细地研究纳米线阵列的光学响应,我们进行了电磁建模。该建模突出了从反射光谱中提取吸收率的有效性,以及由于纳米线的抗反射特性导致的提取局限性。在我们的实验与理论相结合的研究中,我们发现闪锌矿型和纤锌矿型纳米线都存在一个吸收共振峰,通过减小纳米线直径可将其调谐到紫外区域。对于闪锌矿型GaP,当纳米线直径减小到约330 nm波长时,该峰停止蓝移。相比之下,对于纤锌矿型GaP纳米线,在我们成功制备的最小直径下,共振在310 nm处继续蓝移。我们将此解释为纤锌矿型和闪锌矿型GaP在该波长区域的折射率差异。这些结果为利用闪锌矿型和纤锌矿型GaP纳米线阵列在可见光和紫外波长区域的共振吸收进行光学应用开辟了道路。值得注意的是,闪锌矿型和纤锌矿型GaP比之前发现的闪锌矿型和纤锌矿型InP及InAs在紫外区域支持更深的共振吸收。