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Characterization of a hybrid PVD/PACVD system for the deposition of TiC/CaO nanocomposite films by OES and probe measurements

机译:通过OES和探针测量表征TiC / CaO纳米复合薄膜的混合PVD / PACVD系统的特性

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A hybrid PVD/PACVD system, which was used for the deposition of TiC/CaO nanocomposite films from a TiC0.5 + 10% CaO target, has been characterized by optical emission spectroscopy (OES), electrical probe measurements and deposition experiments. The system consists of a dc magnetron unit to create a flux of species to be deposited, an inductively coupled rf Ar plasma by which these species are excited and ionized to a high degree and a rf substrate bias plasma by means of which the energy of the ions impinging onto the growing film is determined. Optical inspection shows that the plasma is spatially bisected, with a typical argon plasma in the vicinity of the substrate holder, while the vicinity of the target is dominated by excited and ionized species from the target. The spatial extent of both regions depends on the interplay of the deposition parameters, especially the target current (power) and the inductively coupled plasma (ICP) power. The two different plasma states, which are obviously different with respect to both, plasma density and electron temperature, also reflect in the optical emission spectra taken in the vicinity of the target, the currents measured by an electrical probe at the position of the substrate holder, and even the deposition rates obtained with this system. (C) 2004 Elsevier B.V. All rights reserved.
机译:混合PVD / PACVD系统用于从TiC0.5 + 10%CaO靶沉积TiC / CaO纳米复合材料薄膜,其特征已经通过光发射光谱(OES),电探针测量和沉积实验进行了表征。该系统包括一个直流磁控管单元,用于产生要沉积的物质通量;感应耦合的rf Ar等离子体,这些物质被激发和高度电离;以及rf衬底偏置等离子体,借助该等离子体,等离子体的能量得以释放。确定撞击在生长膜上的离子。光学检查表明,等离子体在空间上被一分为二,典型的氩气等离子体在基板支架附近,而靶材的附近则是来自靶材的激发和电离物质。两个区域的空间范围取决于沉积参数的相互作用,尤其是目标电流(功率)和电感耦合等离子体(ICP)功率。在等离子体密度和电子温度方面明显不同的两种不同等离子体状态,也反映在靶附近获取的光发射光谱中,即由电探针在衬底支架位置测量的电流,甚至使用该系统获得的沉积速率。 (C)2004 Elsevier B.V.保留所有权利。

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