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Doping of III-Nitride Nanowires Grown by Molecular Beam Epitaxy

机译:分子束外延生长的III族氮化物纳米线的掺杂

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III-nitride nanowires (NWs) were grown on Si(111) without catalyst by plasma-assisted molecular-beam epitaxy under N-rich conditions. The influence of doping on the morphology and electrical properties was investigated. The morphology as well as the density of GaN NWs changes with Si amount. For high Si fluxes, the wire density is reduced, in addition, the NWs broaden from bottom to top. By doping with Mg, the NW shape does not significantly change although the wires tend to coalesce. The photoelectric transport in GaN NWs is extremely sensitive to the NW diameter. This effect is used to determine the doping level. The free carrier concentration and mobility were also estimated using Raman measurements. For Si-doped InN NWs, a reduced NW density is observed, in comparison to the undoped counterpart. At high Si doping, the InN NW morphology is improved leading to more uniform diameter NWs. InN NWs have metallic conductance because of a high background bulk concentration and the surface electron accumulation layer. The broadening of the photoluminescence (PL) spectra as a function of Fermi level was used to determine the electron concentration in different InN NW samples. A comparison of Raman scattering and electrical measurements is also presented.
机译:在富氮条件下,通过等离子体辅助分子束外延,在没有催化剂的Si(111)上生长III型氮化物纳米线(NWs)。研究了掺杂对形貌和电性能的影响。 GaN NW的形貌和密度随Si量的变化而变化。对于高Si通量,线密度会降低,此外,NW从底部到顶部变宽。通过掺入Mg,尽管导线趋于聚结,但NW形状不会显着改变。 GaN NW中的光电传输对NW直径极为敏感。该效应用于确定掺杂水平。还使用拉曼测量来估计自由载流子浓度和迁移率。对于Si掺杂的InN NW,与未掺杂的NN相比,NW密度降低。在高Si掺杂下,InN NW形貌得到改善,导致直径NW更加均匀。 InN NW由于具有较高的背景体积浓度和表面电子累积层而具有金属电导率。使用光致发光(PL)光谱的增宽作为费米能级的函数来确定不同InN NW样品中的电子浓度。还提出了拉曼散射和电学测量的比较。

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