Chiral phonons in quartz probed by X-rays

被引:0
作者
Hiroki Ueda
Mirian García-Fernández
Stefano Agrestini
Carl P. Romao
Jeroen van den Brink
Nicola A. Spaldin
Ke-Jin Zhou
Urs Staub
机构
[1] Paul Scherrer Institute,Swiss Light Source
[2] Paul Scherrer Institute,SwissFEL
[3] Diamond Light Source,Department of Materials
[4] ETH Zurich,Institute for Theoretical Solid State Physics
[5] IFW Dresden,Institute for Theoretical Physics and Würzburg–Dresden Cluster of Excellence ct.qmat
[6] Dresden University of Technology,undefined
来源
Nature | 2023年 / 618卷
关键词
D O I
暂无
中图分类号
学科分类号
摘要
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 topology1–3. The experimental verification of chiral phonons (bosons) remains challenging, however, despite their expected strong impact on fundamental physical properties4–6. 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.
引用
收藏
页码:946 / 950
页数:4
相关论文
共 92 条
[1]  
Xu S(2015)Discovery of a Weyl fermion semimetal and topological Fermi arcs Science 349 613-617
[2]  
Chang G(2018)Topological quantum properties of chiral crystals Nat. Mater. 17 978-985
[3]  
Gatti G(2020)Radial spin texture of the Weyl fermions in chiral tellurium Phys. Rev. Lett. 125 216402-582
[4]  
Zhang L(2015)Chiral phonons at high-symmetry points in monolayer hexagonal lattices Phys. Rev. Lett. 115 115502-404
[5]  
Niu Q(2018)Observation of chiral phonons Science 359 579-334
[6]  
Zhu H(2022)Magnetic chirality NPJ Quantum Mater. 7 394-227
[7]  
Cheong S-W(2021)Experimental signatures of the chiral anomaly in Dirac–Weyl semimetals Nat. Rev. Phys. 3 16055-1693
[8]  
Xu X(2016)Valleytronics in 2D materials Nat. Rev. Mater. 1 329-373
[9]  
Ong NP(2021)A light-induced phononic symmetry switch and giant dissipationless topological photocurrent in ZrTe Nat. Mater. 20 221-39
[10]  
Liang S(2019)Entanglement of single-photons and chiral phonons in atomically thin WSe Nat. Phys. 15 094303-136