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Temperature-tunable Fano resonance induced by strong coupling between Weyl fermions and phonons in TaAs

机译:TaAs中Weyl费米子与声子之间的强耦合引起的温度可调Fano共振

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摘要

Strong coupling between discrete phonon and continuous electron–hole pair excitations can induce a pronounced asymmetry in the phonon line shape, known as the Fano resonance. This effect has been observed in various systems. Here we reveal explicit evidence for strong coupling between an infrared-active phonon and electronic transitions near the Weyl points through the observation of a Fano resonance in the Weyl semimetal TaAs. The resulting asymmetry in the phonon line shape, conspicuous at low temperatures, diminishes continuously with increasing temperature. This behaviour originates from the suppression of electronic transitions near the Weyl points due to the decreasing occupation of electronic states below the Fermi level (EF) with increasing temperature, as well as Pauli blocking caused by thermally excited electrons above EF. Our findings not only elucidate the mechanism governing the tunable Fano resonance but also open a route for exploring exotic physical phenomena through phonon properties in Weyl semimetals.
机译:离散声子与连续的电子-空穴对激发之间的强耦合会在声子线形中引起明显的不对称性,称为Fano共振。已经在各种系统中观察到了这种效果。在这里,我们通过观察Weyl半金属TaAs中的Fano共振,揭示了红外活性声子与Weyl点附近电子跃迁之间强耦合的明确证据。声子线形状的不对称性在低温下非常明显,随着温度的升高而不断减小。此行为源自对Weyl点附近电子跃迁的抑制,这归因于随着温度的升高,低于费米能级(EF)的电子态的占有率降低,以及由于高于EF的热激发电子引起的保利阻塞。我们的发现不仅阐明了可调节的Fano共振的机理,而且为通过Weyl半金属的声子性质探索奇特的物理现象开辟了道路。

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