Physics Department and Center of Applied Photonics, Universität Konstanz, D-78457, Germany.
Phys Rev Lett. 2010 Aug 6;105(6):066402. doi: 10.1103/PhysRevLett.105.066402. Epub 2010 Aug 4.
We report on the high resolution studies of the temperature (T) dependence of the q=0 phonon spectrum in the quasi-one-dimensional charge density wave (CDW) compound K(0.3)MoO(3) utilizing time-resolved optical spectroscopy. Numerous modes that appear below T(c) show pronounced T dependences of their amplitudes, frequencies, and dampings. Utilizing the time-dependent Ginzburg-Landau theory we show that these modes result from linear coupling of the electronic part of the order parameter to the 2k(F) phonons, while the (electronic) CDW amplitude mode is overdamped.
我们报告了在时间分辨光学光谱学中,利用高分辨率研究准一维电荷密度波(CDW)化合物 K(0.3)MoO(3)中 q=0 声子谱随温度(T)的变化。在 T(c)以下出现的许多模式表现出其幅度、频率和阻尼的明显 T 依赖性。利用时变的 Ginzburg-Landau 理论,我们表明这些模式是由有序参数的电子部分与 2k(F)声子的线性耦合引起的,而(电子)CDW 幅度模式则是过阻尼的。