论文标题

脉冲激光和溅射沉积的SB2TE3生长差异

Differences in Sb2Te3 growth by pulsed laser and sputter deposition

论文作者

Ning, Jing, Martinez, J. C., Momand, Jamo, Zhang, Heng, Tiwari, Subodh C., Shimojo, Fuyuki, Nakano, Aiichiro, Kalia, Rajiv K., Vashishta, Priya, Branicio, Paulo S., Kooi, Bart J., Simpson, Robert E.

论文摘要

高质量的范德华葡萄糖生元素对于相变数据存储,热电学和旋转三位型很重要。使用实验和密度函数理论的统计设计的结合,我们阐明了范围外的范德华外延沉积方法如何改善SB2TE3膜的晶体质量。我们比较了通过射频溅射和脉冲激光沉积(PLD)生长的薄膜。影响每种方法晶体质量的生长因子不同。对于PLD生长的膜,薄薄的无定形SB2TE3种子层最大程度地影响了晶体质量。相反,溅射生长的薄膜的结晶质量对沉积温度相当敏感,并且受种子层的存在影响较小。这种差异有些令人惊讶,因为这两种方法都是基于血浆的非平衡方法。非绝热量子分子动力学模拟表明,这种差异起源于血浆中激发原子的密度。 PLD血浆比溅射中的血浆更强烈,具有更高的能量,这会增加沉积原子的电子温度,这同时增加了PLD中的Adatom扩散长度。相比之下,Adatom扩散率由溅射生长膜的热温度主导。这些结果解释了文献中观察到的SB2TE3和超晶格晶体质量的广泛范围。这些结果表明,与普遍的看法相反,基于血浆的沉积方法适合于生长高质量的晶体质源化。

High quality Van der Waals chalcogenides are important for phase change data storage, thermoelectrics, and spintronics. Using a combination of statistical design of experiments and density functional theory, we clarify how the out-of-equilibrium van der Waals epitaxial deposition methods can improve the crystal quality of Sb2Te3 films. We compare films grown by radio frequency sputtering and pulsed laser deposition (PLD). The growth factors that influence the crystal quality for each method are different. For PLD grown films a thin amorphous Sb2Te3 seed layer most significantly influences the crystal quality. In contrast, the crystalline quality of films grown by sputtering is rather sensitive to the deposition temperature and less affected by the presence of a seed layer. This difference is somewhat surprising as both methods are out-of-thermal-equilibrium plasma-based methods. Non-adiabatic quantum molecular dynamics simulations show that this difference originates from the density of excited atoms in the plasma. The PLD plasma is more intense and with higher energy than that used in sputtering, and this increases the electronic temperature of the deposited atoms, which concomitantly increases the adatom diffusion lengths in PLD. In contrast, the adatom diffusivity is dominated by the thermal temperature for sputter grown films. These results explain the wide range of Sb2Te3 and superlattice crystal qualities observed in the literature. These results indicate that, contrary to popular belief, plasma-based deposition methods are suitable for growing high quality crystalline chalcogenides.

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