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Dynamics and Control in Complex Transition Metal Oxides

机译:复杂过渡金属氧化物的动力学与控制

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Advances in the synthesis, growth, and characterization of complex transition metal oxides coupled with new experimental techniques in ultrafast optical spectroscopy have ushered in an exciting era of dynamics and control in these materials. Experiments utilizing femtosecond optical pulses can initiate and probe dynamics of the spin, lattice, orbital, and charge degrees of freedom. Major goals include (a) determining how interaction and competition between the relevant degrees of freedom determine macroscopic functionality in transition metal oxides (TMOs) and (b) searching for hidden phases in TMOs by controlling dynamic trajectories in a complex and pliable energy landscape. Advances in creating intense pulses from the far-IR spectrum through the visible spectrum enable mode-selective excitation to facilitate exploration of these possibilities. This review covers recent developments in this emerging field and presents examples that include the cuprates, manganites, and vanadates.
机译:复杂过渡金属氧化物的合成,生长和表征方面的进展,再加上超快光谱学中的新实验技术,已经为这些材料的动力学和控制开创了令人兴奋的时代。利用飞秒光脉冲的实验可以启动和探测自旋,晶格,轨道和电荷自由度的动力学。主要目标包括(a)确定相关自由度之间的相互作用和竞争如何确定过渡金属氧化物(TMO)的宏观功能,以及(b)通过控制复杂而柔韧的能源格局中的动态轨迹来寻找TMO中的隐藏相。从远红外光谱到可见光谱产生强脉冲的进展使得模式选择性激发能够促进对这些可能性的探索。这篇综述涵盖了这个新兴领域的最新发展,并提出了包括铜酸盐,锰酸盐和钒酸盐的例子。

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