Swiss Light Source, Paul Scherrer Institute, Villigen, Switzerland.
SwissFEL, Paul Scherrer Institute, Villigen, Switzerland.
Nature. 2023 Jun;618(7967):946-950. doi: 10.1038/s41586-023-06016-5. Epub 2023 Jun 7.
The concept of chirality is of great relevance in nature, from chiral molecules such as sugar to parity transformations in particle physics. In condensed matter physics, recent studies have demonstrated chiral fermions and their relevance in emergent phenomena closely related to topology. The experimental verification of chiral phonons (bosons) remains challenging, however, despite their expected strong impact on fundamental physical properties. Here we show experimental proof of chiral phonons using resonant inelastic X-ray scattering with circularly polarized X-rays. Using the prototypical chiral material quartz, we demonstrate that circularly polarized X-rays, which are intrinsically chiral, couple to chiral phonons at specific positions in reciprocal space, allowing us to determine the chiral dispersion of the lattice modes. Our experimental proof of chiral phonons demonstrates a new degree of freedom in condensed matter that is both of fundamental importance and opens the door to exploration of new emergent phenomena based on chiral bosons.
手性的概念在自然界中具有重要意义,从手性分子(如糖)到粒子物理中的宇称变换。在凝聚态物理中,最近的研究表明手性费米子及其在与拓扑密切相关的新兴现象中的相关性。然而,手性声子(玻色子)的实验验证仍然具有挑战性,尽管它们对手性声子(玻色子)的预期对基本物理性质有很强的影响。在这里,我们使用具有圆偏振 X 射线的共振非弹性 X 射线散射来证明手性声子的实验证据。使用典型的手性材料石英,我们证明了圆偏振 X 射线,它本质上是手性的,在倒易空间的特定位置与手性声子耦合,这使我们能够确定晶格模式的手性色散。我们对手性声子的实验证明表明,凝聚态物质中存在着一种新的自由度,这既具有重要的基础意义,又为探索基于手性玻色子的新的新兴现象打开了大门。