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Coherent optical phonon oscillation and possible electronic softening in WTe2 crystals

机译:WTe2晶体中的相干光子声子振荡和可能的电子软化

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摘要

A rapidly-growing interest in WTe2 has been triggered by the giant magnetoresistance effect discovered in this unique system. While many efforts have been made towards uncovering the electron- and spin-relevant mechanisms, the role of lattice vibration remains poorly understood. Here, we study the coherent vibrational dynamics in WTe2 crystals by using ultrafast pump-probe spectroscopy. The oscillation signal in time domain in WTe2 has been ascribed as due to the coherent dynamics of the lowest energy A1 optical phonons with polarization- and wavelength-dependent measurements. With increasing temperature, the phonon energy decreases due to anharmonic decay of the optical phonons into acoustic phonons. Moreover, a significant drop (15%) of the phonon energy with increasing pump power is observed which is possibly caused by the lattice anharmonicity induced by electronic excitation and phonon-phonon interaction.
机译:在这种独特的系统中发现的巨大的磁阻效应引起了人们对WTe2的快速增长的兴趣。尽管人们为揭示电子和自旋相关机理做出了许多努力,但对晶格振动的作用仍然知之甚少。在这里,我们通过使用超快泵浦探针光谱研究WTe2晶体中的相干振动动力学。 WTe2中在时域中的振荡信号已被归因于最低能量的A1光子与偏振和波长相关的测量的相干动力学。随着温度升高,由于光学声子向声子的非谐衰变,声子能量降低。此外,观察到随着泵浦功率的增加,声子能量显着下降(15%),这可能是由电子激发和声子-声子相互作用引起的晶格非谐性引起的。

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