论文标题
非中心对称晶体的隐藏物理效应
Hidden Physical Effects in Non-centrosymmetric Crystals
论文作者
论文摘要
晶体中禁止的对称性可能会在打破对称性的局部环境中出现。然而,仅在中心对称晶体中讨论这些隐藏的物理效应。在这里,我们建议将隐藏的物理效应推广到几乎所有晶体学对称组,从而揭示其普遍性和多样性。我们系统地讨论了可能引起隐藏自旋极化(HSP),隐藏的浆果曲率和隐藏谷极化的某些对称性,重点是针对HSP的特定模式,其平面内旋转矢量的绕组方向对于邻近的带状带,而邻接带相同,被称为Anomalos HSP。这种前所未有的自旋模式来自相对较弱的自旋依赖性部门的相互作用,并且在镜像对称INSE中得到了第一原理的计算。独特的电场依赖性分裂到特定的空间极化模式中可能是异常HSP的实验特征。我们的结果揭示了除中心对称晶体以外的大量隐藏物理效果,并提供了新的平台,以讨论它们以进行新兴的物理效果和未来的应用。
Symmetry forbidden effects in crystals may emerge in a local environment that breaks the symmetries. Yet these hidden physical effects were only discussed in centrosymmetric crystals. Here we propose that hidden physical effects can be generalized to almost all crystallographic symmetric groups and hence reveal their universality and diversity. We systematically discuss certain symmetries in crystals that may induce hidden spin polarization (HSP), hidden berry curvature and hidden valley polarization, with a focus on a specific pattern of HSP whose winding directions of the in-plane spin vectors are the same for adjacent bands, dubbed anomalous HSP. Such an unprecedented spin pattern arises from relatively weak spin-dependent inter-sector interaction and is demonstrated in mirror-symmetric InSe by first-principles calculations. Unique electric field-dependent splitting into specific spatial polarization pattern may serve as an experimental signature of anomalous HSP. Our results reveal abundant hidden physical effects beyond centrosymmetric crystals and provide new platforms to discuss them for emergent physical effects and future applications.