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Alternative Route for Obtaining ${rm NiFe}_{2}{rm O}_{4}$ Thin Films by Pulsed Laser Deposition

机译:通过脉冲获得 $ {rm NiFe} _ {2} {rm O} _ {4} $ 的替代方法激光沉积

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Ferrites in thin film form are usually obtained by pulsed laser deposition (PLD). This method can induce the presence of secondary phases, a problem which requires an annealing process. The study aimed at finding a PLD based method through which, in further studies, ferrites with a controllable phase composition can be obtained. Therefore, we obtained ferrite thin films in oxygen atmosphere and in high vacuum. Raman spectroscopy measurements for the samples obtained in high vacuum revealed the formation of magnetite. Instead of annealing, we irradiated these samples with an excimer laser $(lambda=308 {rm nm})$, at various frequencies, for certain amount of pulses. The Raman spectra revealed the formation of the nickel ferrite phase, as well as the presence of residual magnetite phase.
机译:薄膜形式的铁氧体通常通过脉冲激光沉积(PLD)获得。该方法可引起次级相的存在,这是需要退火工艺的问题。该研究旨在寻找一种基于PLD的方法,通过该方法,在进一步的研究中,可以获得具有可控相组成的铁氧体。因此,我们在氧气气氛和高真空下获得了铁氧体薄膜。在高真空下获得的样品的拉曼光谱测量显示出磁铁矿的形成。代替退火,我们用受激准分子激光器 $(lambda = 308 {rm nm})$ 辐照这些样品。一定数量的脉冲的频率。拉曼光谱揭示了铁素体镍相的形成以及剩余磁铁矿相的存在。

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