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Studies of the photonic and optical-frequency phonon properties of arrays of selectively grown GaN micropyramids

机译:选择性生长的GaN微型金字塔阵列的光子和光频声子特性研究

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An array of GaN micropyramids containing a near-surface In_xGa_(1-x)N/GaN single quantum well has been fabricated using selective area epitaxial overgrowth above a patterned silica mask. The pyramid array has been studied by means of angle-resolved reflection measurements using s- and p-polarized incident light in the near- and mid-infrared optical ranges. We have found that the periodic array of flat-topped pyramids shows marked resonances in the near-infrared optical range due to resonant Bloch modes within the extraction cone and that the angular dispersion of these modes exhibits strong photonic crystal characteristics. The experimental results are in good agreement with the photonic band structure calculated using a scattering matrix formalism. The mid-infrared optical anisotropy properties of the micropyramids were investigated to probe the infrared active phonons of the pyramid array. The A_1(LO) phonon of the In_xGa_(1-x)N/GaN single quantum well was identified and the InN mole fraction was estimated from the mode behavior.
机译:包含近表面In_xGa_(1-x)N / GaN单量子阱的GaN微型金字塔阵列已通过使用图案化二氧化硅掩膜上方的选择性区域外延过度生长来制造。已经通过在近红外和中红外光学范围内使用s偏振和p偏振入射光的角度分辨反射测量方法研究了金字塔形阵列。我们已经发现,由于萃取锥内的共振Bloch模式,平顶金字塔的周期性阵列在近红外光学范围内显示出明显的共振,并且这些模式的角分散显示出强的光子晶体特性。实验结果与使用散射矩阵形式学计算的光子能带结构非常吻合。研究了微金字塔的中红外光学各向异性,以探测金字塔阵列的红外活性声子。鉴定了In_xGa_(1-x)N / GaN单量子阱的A_1(LO)声子,并根据模态行为估算了InN摩尔分数。

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