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首页> 外文期刊>Nuclear Instruments & Methods in Physics Research. B, Beam Interactions with Materials and Atoms >Kinetics of the crystalline to crystalline phase transformation induced in pure zirconia by swift heavy ion irradiation
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Kinetics of the crystalline to crystalline phase transformation induced in pure zirconia by swift heavy ion irradiation

机译:快速重离子辐照在纯氧化锆中诱导的晶相转变动力学

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摘要

It is generally admitted that the irradiation of crystalline oxides with high energy heavy ions, where the slowing down is mainly due to electronic excitations or ionizations, often leads to the formation of highly defective or amorphous tracks. In the latter case, the amorphization process follows a single ion impact mechanism. However, recent results demonstrate that in certain circumstances crystalline to crystalline phase transitions can also occur. This is the case of pure zirconia which transforms from the monoclinic to the tetragonal phase when the deposited electronic energy loss exceeds an effective threshold near 13 keV nm~(-1). Moreover, recent experiments exploring a wide range of the deposited electronic energy loss demonstrate that the kinetics of phase transformation is always sigmoidal and is consistently characterized by a double ion impacts mechanism. Therefore, it seems that this process is a constant feature of this ion-beam induced crystalline to crystalline phase transition. The origin of this behaviour will be discussed and confronted with the existing models.
机译:通常认为,高能重离子对晶体氧化物的照射通常会导致高度缺陷或无定形的痕迹,而减速主要是由于电子激发或电离引起的。在后一种情况下,非晶化过程遵循单个离子撞击机理。但是,最近的结果表明,在某些情况下,也会发生晶相至晶相的转变。纯氧化锆就是这种情况,当沉积的电子能量损失超过13 keV nm〜(-1)附近的有效阈值时,它会从单斜晶相转变为四方晶相。而且,最近的实验探索了各种沉积的电子能量损失,表明相变动力学始终为S型,并且始终具有双离子碰撞机理。因此,似乎该过程是该离子束诱导的晶体至晶体相变的恒定特征。将讨论这种行为的根源,并与现有模型对峙。

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