量子临界点
物理
凝聚态物理
反铁磁性
量子相变
量子
临界点(数学)
量子相
缩放比例
磁场
量子力学
相变
几何学
数学
数学分析
作者
Yi Cui,Lu Liu,Huihang Lin,Kai-Hsin Wu,Wenshan Hong,Xuefei Liu,Cong Li,HU Ze,Ning Xi,Shiliang Li,Rong Yu,Anders W. Sandvik,Weiqiang Yu
出处
期刊:Cornell University - arXiv
日期:2022-04-18
被引量:7
标识
DOI:10.48550/arxiv.2204.08133
摘要
The deconfined quantum critical point (DQCP) represents a paradigm shift in quantum matter studies, presenting a "beyond Landau" scenario for order--order transitions. Its experimental realization, however, has remained elusive. Using high-pressure $^{11}$B NMR measurements on the quantum magnet SrCu$_2$(BO$_3$)$_2$, we here demonstrate a magnetic-field induced plaquette-singlet to antiferromagnetic transition above 1.8 GPa at a remarkably low temperature, $T_{\rm c}\simeq 0.07$ K. First-order signatures of the transition weaken with increasing pressure, and we observe quantum critical scaling at the highest pressure, 2.4 GPa. Supported by model calculations, we suggest that these observations can be explained by a proximate DQCP inducing critical quantum fluctuations and emergent O(3) symmetry of the order parameters. Our findings take the DQCP from a theoretical concept to a concrete experimental platform.
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