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首页> 外文期刊>Optical and quantum electronics >Laser-induced semiconductor nanocluster structures on the solid surface: new physical principles to construct the hybrid elements for photonics
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Laser-induced semiconductor nanocluster structures on the solid surface: new physical principles to construct the hybrid elements for photonics

机译:固体表面上的激光诱导半导体纳米团簇结构:构建光子学混合元素的新物理原理

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The laser synthesis technique for producing nanoparticlesanoclusters of different topology for semiconductor samples (PbTe) is presented by two laser ablation methods: direct laser modification of thin films and laser evaporation of substance from the target in liquid (ethanol) to produce a colloidal system, and the subsequent laser deposition of the particles from colloid on solid substrate [under continuous wave (cw)-laser, λ = 1.06 urn, laser intensity-up to 10~6 W/cm~2]. Electro-physical properties of the induced structures have been controlled by various induced topology. It is obtained that electroresistance can dramatically decrease due to spontaneous selected multichannel/parallel electron transportation trajectories in the inhomogeneous cluster system. Two conditions are principal for that: the characteristic cluster size a < ℓ, where ℓ is the inelastic length, and distance d between two neighboring clusters must be less than de Broglie wavelength λ_(dB). So, the tunneling quantum effect takes place between correlated particles in two domains. Jump conductivity has also been detected under some experimental conditions for laser-induced cluster structures. The cluster shell model can be taken into account to explain the experimental results. For such laser-induced nanostructures we demonstrated the tendency of superconductivity to increase the electrical conductivity by several times (at room temperature) in our case as compared to the homogenous monolithic sample. The fact can be explained by analogy with the correlated particles/coupling pairs. Such approach is of great significance for constructing the elements and devices of optoelectronics and photonics in hybrid circuits on new physical principles.
机译:通过两种激光烧蚀方法提出了一种用于生产半导体样品(PbTe)不同拓扑结构的纳米粒子/纳米簇的激光合成技术:直接激光修饰薄膜和从目标物在液体(乙醇)中蒸发物质以产生胶体系统,然后将胶体中的颗粒从激光沉积到固体基质上[在连续波(cw)激光下,λ= 1.06 um,激光强度高达10〜6 W / cm〜2]。诱导结构的电物理性质已经通过各种诱导拓扑来控制。可以发现,由于在不均匀簇系统中自发选择的多通道/平行电子传输轨迹,电阻可以显着降低。为此,主要有两个条件:特征簇尺寸a <ℓ,其中ℓ是非弹性长度,两个相邻簇之间的距离d必须小于de Broglie波长λ_(dB)。因此,隧道量子效应发生在两个域中的相关粒子之间。在某些实验条件下,对于激光诱导的团簇结构,也已经检测到跳跃电导率。可以考虑使用簇壳模型来解释实验结果。对于这种激光诱导的纳米结构,我们证明了与均匀的整体样品相比,在我们的情况下,超导性将电导率提高了几倍(在室温下)。可以通过相关粒子/耦合对的类比解释这一事实。这种方法对于在新的物理原理上构造混合电路中的光电子和光子学的元件和器件具有重要意义。

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