Time-resolved nanospectroscopy of III-V semiconductor nanowires.

IF 4.6 3区 材料科学 Q2 CHEMISTRY, MULTIDISCIPLINARY
Andrei Luferau, Alexej Pashkin, Stephan Winnerl, Maximilian Obst, Susanne C Kehr, Emmanouil Dimakis, Thales V A G de Oliveira, Lukas M Eng, Manfred Helm
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引用次数: 0

Abstract

We investigate ultrafast electron dynamics in individual GaAs/InGaAs core-shell nanowires using near-infrared pump-mid-infrared probe nanospectroscopy based on a scattering-type scanning near-field technique. Our results reveal a distinct blue shift in plasmon resonance frequency induced by photodoping. By extracting time-dependent electron densities and scattering rates, we gain insights into the effects of chemical doping and nanowire surface states on recombination dynamics and carrier mobility. Varying the pump power over two orders of magnitude reveals carrier recombination times in the range from a few ps at high power to 100 ps at low power, dominated by bimolecular recombination. Our findings highlight the potential of time-resolved nanoscopy for contactless probing of free carrier mobility and recombination dynamics on a local scale in individual semiconductor nanostructures or nanodevices.

III-V型半导体纳米线的时间分辨纳米光谱。
利用基于散射型扫描近场技术的近红外泵浦-中红外探针纳米光谱研究了单个GaAs/InGaAs核壳纳米线中的超快电子动力学。我们的研究结果揭示了光掺杂诱导等离子体共振频率的明显蓝移。通过提取随时间变化的电子密度和散射率,我们深入了解了化学掺杂和纳米线表面状态对复合动力学和载流子迁移率的影响。在两个数量级上改变泵浦功率,揭示了载流子重组时间的范围从高功率下的几ps到低功率下的100 ps,以双分子重组为主。我们的研究结果强调了时间分辨纳米显微镜在非接触探测自由载流子迁移率和局部尺度上单个半导体纳米结构或纳米器件的重组动力学方面的潜力。
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来源期刊
Nanoscale Advances
Nanoscale Advances Multiple-
CiteScore
8.00
自引率
2.10%
发文量
461
审稿时长
9 weeks
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