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Sp~3 domain in graphite by visible light and photoinduced phase transitions

机译:可见光和光诱导相变在石墨中的Sp〜3域

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Photoinduced structural phase transition (PSPT)s are reviewed in connection with recent experimental results. There are two key concepts: the hidden multi-stability of the ground state, and the proliferations of optically excited states. Taking the ionic (I)-neutral (N) phase transition in an organic charge-transfer (CT) crystal TTF-CA, as an example, we, briefly look back the essence of its PSPT, in terms of the CT exciton and the N-domain proliferation. Next, we are concerned with the discovery of a new photoinduced phase with inter-layer σ-bonds in a graphite. We will see the mechanism of this nonequilibrium phase transition, in terms of the proliferation of photo-generated inter-layer CT excitations in the visible region. At the Franck-Condon state, the resultant electron-hole pair is quite unstable, being easily dissipated into the two-dimensional electronic continuum, as plus and minus free carriers. However, by a small probability, the electron and the hole are bound as an inter-layer CT exciton. This exciton self-localizes, contracting the inter-layer distance and buckling the six membered ring of graphite, only around it. Thus a tiny sp ~3 nano-domain appears.
机译:光致结构相变(PSPT)s结合最近的实验结果进行了审查。有两个关键概念:基态的隐藏多重稳定性和光激发态的扩散。以有机电荷转移(CT)晶体TTF-CA中的离子(I)-中性(N)相变为例,我们从CT激子和激发子方面简要回顾了PSPT的本质。 N域增殖。接下来,我们关注在石墨中发现具有层间σ键的新光诱导相。从可见区域中光生层间CT激发的扩散方面,我们将看到这种非平衡相变的机制。在弗兰克-康登状态下,所得的电子-空穴对非常不稳定,容易作为正负载流子消散到二维电子连续体中。但是,电子和空穴的可能性很小,成为层间CT激子。该激子自动定位,缩小层间距离并使六元石墨环屈曲,仅在石墨环周围。因此,出现了一个微小的sp〜3纳米域。

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