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Dynamics of charge density wave order in the quasi one dimensional conductor (TaSe4)2I probed by femtosecond optical spectroscopy

机译:飞秒光谱法探测准一维导体(TaSe4)2I中电荷密度波阶的动力学

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摘要

Carrier and collective mode dynamics in the quasi one-dimensional charge density wave (CDW) system (TaSe4)2I have been investigated by means of time-resolved optical pump-probe spectroscopy. In the low excitation, linear, regime we focus on the temperature dependence of the collective amplitude modes, originating from linear coupling of the electronic modulation to phonons at q CDW. Numerous amplitude modes are observed, ranging from 100 GHz to several THz. The modes’ softening near T c is rather weak, which could be related to strong decoupling of electronic and lattice subsystems. Alternatively, the data could be reconciled also in case the CDW phase transition is of the first-order type where a nearly constant order parameter below T c would prevent softening. In the high excitation regime we investigated the energetics of the photoinduced CDW-normal phase transition. Similarly to the elaborately investigated one-dimensional CDW system K0.3MoO3 we observe two characteristic energy scales, related to melting the electronic modulation alone (100 meV per unit cell) and to the overall (electronic modulation and the periodic lattice distortion) collapse of the CDW (> 400 meV per unit cell). While the latter coincides with the thermal energy needed to heat the sample from 5 K above T c the former is consistent with the mean field estimate for the electronic condensation energy, suggesting that the weak coupling description of the CDW in (TaSe4)2I is appropriate.
机译:通过时间分辨光学泵浦探针光谱法研究了准一维电荷密度波(CDW)系统(TaSe4)2I中的载流子和集体模式动力学。在低激励线性方案中,我们集中于集体振幅模式的温度依赖性,这源于电子调制与q CDW处声子的线性耦合。观察到许多幅度模式,范围从100 GHz到几个THz。 T c附近的模式软化相当弱,这可能与电子子系统和晶格子系统的强烈去耦有关。可替代地,在CDW相变是一阶类型的情况下,也可以对数据进行协调,其中低于T c的几乎恒定的阶次参数将防止软化。在高激发态下,我们研究了光诱导的CDW正常相变的能量。与精心研究的一维CDW系统K0.3MoO3相似,我们观察到两个特征能级,分别与熔化电子调制(每单位晶胞100 meV)和整体(电子调制和周期性晶格畸变)的崩溃有关。 CDW(每单位电池> 400 meV)。后者与从T c到5 K加热样品所需的热能相吻合,而前者与电子凝聚能的平均场估计值一致,这表明(TaSe4)2I中CDW的弱耦合描述是合适的。

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    《The European Physical Journal Special Topics》 |2013年第5期|1005-1016|共12页
  • 作者单位

    Dept. of Physics and Zukunftskolleg Univ. of Konstanz">(11966);

    Dept. of Physics and Zukunftskolleg Univ. of Konstanz">(11966);

    Complex Matter Department Jozef Stefan Institute">(21966);

    Institute of Physics">(31966);

    Physics Department EPFL">(41966);

    Dept. of Physics and Zukunftskolleg Univ. of Konstanz">(11966);

    Institute of Physics Ilmenau University of Technology">(51966);

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