學術活動
量子材料
Dynamic fingerprint of fractionalized excitations in single-crystalline Cu3Zn(OH)6FBr
浏覽次數:
主講人: 梅佳偉 (南方科技大學)
地點: 騰訊會議ID:802 906 971
時間: 時間: 2021年3月17日 (周三)下午3:00
主持 聯系人: 李源 <yuan.li@pku.edu.cn>
主講人簡介: 梅佳偉博士,南方科技大學物理系助理教授,主要從事量子磁性和超導方面的研究。梅佳偉博士在清華大學取得學士和博士學位後,曾在瑞士、加拿大和美國從事博士後工作,2017年7月至今于南方科技大學工作。

Abstract:

Beyond the absence of long-range magnetic orders, the most prominent feature of the elusive quantum spin liquid (QSL) state is the existence of fractionalized spin excitations, i.e., spinons. When the system orders, the spin-wave excitation appears as the bound state of the spinon-antispinon pair. Although scarcely reported, a direct comparison between similar compounds illustrates the evolution from spinon to magnon. Here, we perform the Raman scattering on single crystals of two quantum kagome antiferromagnets, of which one is the kagome QSL candidate Cu3Zn(OH)6FBr, and another is an antiferromagnetically ordered compound EuCu3(OH)6Cl3. In Cu3Zn(OH)6FBr, we identify a unique one spinon-antispinon pair component in the E2g magnetic Raman continuum, providing strong evidence for deconfined spinon excitations. In contrast, a sharp magnon peak emerges from the one-pair spinon continuum in the Eg magnetic Raman response once EuCu3(OH)6Cl3 undergoes the antiferromagnetic order transition. From the comparative Raman studies, we can regard the magnon mode as the spinon-antispinon bound state, and the spinon confinement drives the magnetic ordering.