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首页> 外文期刊>Physical review. B, Condensed Matter And Materials Physics >Interchain coupling effects on photoinduced phase transitions between neutral and ionic phases in an extended Hubbard model with alternating potentials and an electron-lattice coupling
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Interchain coupling effects on photoinduced phase transitions between neutral and ionic phases in an extended Hubbard model with alternating potentials and an electron-lattice coupling

机译:链间耦合对具有交替电势和电子-晶格耦合的扩展Hubbard模型中中性相和离子相之间光诱导的相变的影响

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Dynamics of ionic-to-neutral and neutral-to-ionic phase transitions induced by intrachain charge-transfer photoexcitations are studied in a quasi-one-dimensional extended Hubbard model with alternating potentials and an electron-lattice coupling for mixed-stack charge-transfer complexes. For interchain couplings, we use electron-electron interactions previously estimated for TTF-CA (TTF=tetrathiafulvalene, CA=chloranil). Pho-toexcitation is introduced by a pulse of oscillating electric field. The time-dependent Hartree-Fock (HF) approximation is used for the electronic part, and the classical approximation for the lattice part. In the ionic-to-neutral transition, the transferred charge density is a strongly nonlinear function of the photoexcitation density, which is characterized by the presence of a threshold. With substantial interchain couplings comparable to those in TTF-CA, the interchain correlation is strong during the transition. Neutral domains in nearby chains simultaneously grow even if their nucleation is delayed by reducing the amplitude of the electric field. With weaker interchain couplings, the growing processes are in phase only when the amplitude of the electric field is large. Thus, the experimentally observed, coherent motion of a macroscopic neutral-ionic domain boundary is allowed to emerge by such substantial interchain couplings. In the neutral-to-ionic transition, by contrast, the transferred charge density is almost a linear function of the photoexcitation density. Interchain electron-electron interactions make the function slightly nonlinear, but the uncooperative situation is almost unchanged and consistent with the experimental findings.
机译:在准一维扩展哈伯德模型中研究了链内电荷转移光激发引起的离子-中性和中性-离子相变的动力学,该模型具有交变电势和电子-晶格耦合,用于混合堆电荷转移复合体。对于链间偶联,我们使用先前针对TTF-CA(TTF =四硫富瓦烯,CA =四氢呋喃)估计的电子-电子相互作用。光激发是由振荡电场脉冲引入的。电子零件使用时变的Hartree-Fock(HF)近似,而晶格零件则使用经典近似。在离子到中性跃迁中,转移的电荷密度是光激发密度的强非线性函数,其特征是存在阈值。通过与TTF-CA中相当的链间偶联,过渡期间链间相关性很强。即使附近的链中的中性畴通过减小电场幅度而延迟了它们的成核作用,也会同时增长。在链间耦合较弱的情况下,仅当电场幅度较大时,生长过程才是同相的。因此,通过这种实质性的链间偶联,可以观察到宏观中性离子域边界的实验观察到的连贯运动。相反,在中性至离子跃迁中,转移的电荷密度几乎是光激发密度的线性函数。链间电子相互作用使该函数略呈非线性,但不合作的情况几乎没有变化,与实验结果一致。

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