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首页> 外文期刊>Physical Review, B. Condensed Matter >Carrier and field dynamics around nanoscale Schottky contacts investigated by ultrafast near-field optics - art. no. 045322
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Carrier and field dynamics around nanoscale Schottky contacts investigated by ultrafast near-field optics - art. no. 045322

机译:超快近场光学技术研究了纳米级肖特基接触周围的载流子和场动力学-艺术。没有。 045322

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摘要

We present femtosecond-resolved optical near-field pump-probe measurements of spatiotemporal carrier dynamics around a single nanoscale tungsten (W) disk embedded in GaAs. In these samples, Schottky contacts are formed at the W/GaAs interface. The experimental results are modeled by a selfconsistent treatment of the drift-diffusion equation for the carriers and Poisson's equation for the built-in electric field. At lower optically excited carrier densities, we observe that the built-in field suppresses electron transport towards and trapping into the metal particles. In this regime, an accumulation of carriers is seen at the edge of the depletion region of the Schottky contacts. The calculation reveals that the formation of a self-induced dynamic potential well is the origin of this result. In the high-density regime, efficient carrier transport towards and trapping into the W nanoparticle take place, resulting from the screening of the built-in field. These results allow us to describe measurements of the carrier dynamics in annealed low-temperature grown GaAs and demonstrate that the coupling of the carrier and field dynamics can substantially affect carrier trapping in metal-semiconductor composite materials. [References: 28]
机译:我们提出了围绕嵌入GaAs的单个纳米级钨(W)磁盘周围时空载流子动力学的飞秒分辨光学近场泵浦探针测量。在这些样品中,肖特基接触在W / GaAs界面处形成。通过对载流子的漂移-扩散方程和内置电场的泊松方程进行自洽处理,对实验结果进行建模。在较低的光激发载流子密度下,我们观察到内置场会抑制电子向金属颗粒的传输并捕获到金属颗粒中。在这种情况下,在肖特基接触的耗尽区的边缘可以看到载流子的积累。计算表明,自感应动态势阱的形成是该结果的来源。在高密度条件下,由于对内置场的筛选,导致了有效的载流子向W纳米颗粒的传输并被捕获。这些结果使我们能够描述退火的低温生长GaAs中载流子动力学的测量结果,并证明载流子和场动力学的耦合会实质上影响金属-半导体复合材料中的载流子俘获。 [参考:28]

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