论文标题
单层转变金属元素中的山谷去极化,带有区域角质声子
Valley Depolarization in Monolayer Transition-Metal Dichalcogenides with Zone-Corner Acoustic Phonons
论文作者
论文摘要
尽管具有新型山谷功能的单层过渡金属二核化元素有望实现Valleytronic设备,但对山谷去极化机制的基本理解仍然不完整。基于对Mose2和WSE2单层进行的泵探针实验,并从密度功能计算中进行了佐证分析,我们证明了在Brillouin区的K点处的相干声子可以有效地介导电子载体的山谷转移。在Mose2单层情况下,我们将此模式识别为弯曲的声学ZA(K)模式,它的反转对称性破裂,因此可以在山谷传输过程中启用电子纤维。另一方面,在单层WSE2情况下,具有均匀的相干性LA(k)声子,具有偶数反转对称性。这些发现表明,虽然valley弛豫的细节取决于能带的自旋比对,但应将K点声子作为有效的山谷去极化途径,在过渡金属二甲基元素单层中的有效山谷去极化途径。
Although single-layer transition-metal dichalcogenides with novel valley functionalities are promising candidate to realize valleytronic devices, the essential understanding of valley depolarization mechanisms is still incomplete. Based on pump-probe experiments performed for MoSe2 and WSe2 monolayers and corroborating analysis from density functional calculations, we demonstrate that coherent phonons at the K-point of the Brillouin zone can effectively mediate the valley transfer of electron carriers. In the MoSe2 monolayer case, we identify this mode as the flexural acoustic ZA(K) mode, which has broken inversion symmetry and thus can enable electron spin-flip during valley transfer. On the other hand, in the monolayer WSe2 case where spin-preserving inter-valley relaxations are preferred coherent LA(K) phonons with even inversion symmetry are efficiently generated. These findings establish that, while the specifics of inter-valley relaxations depend on the spin alignments of energy bands, the K-point phonons should be taken into account as an effective valley depolarization pathway in transition metal dichalcogenide monolayers.