Do Seung-Hwan, Zhang Hao, Williams Travis J, Hong Tao, Garlea V Ovidiu, Rodriguez-Rivera J A, Jang Tae-Hwan, Cheong Sang-Wook, Park Jae-Hoon, Batista Cristian D, Christianson Andrew D
Materials Science and Technology Division, Oak Ridge National Laboratory, Oak Ridge, TN, USA.
Department of Physics and Astronomy, University of Tennessee, Knoxville, TN, USA.
Nat Commun. 2021 Sep 9;12(1):5331. doi: 10.1038/s41467-021-25591-7.
An ongoing challenge in the study of quantum materials, is to reveal and explain collective quantum effects in spin systems where interactions between different modes types are important. Here we approach this problem through a combined experimental and theoretical study of interacting transverse and longitudinal modes in an easy-plane quantum magnet near a continuous quantum phase transition. Our inelastic neutron scattering measurements of BaFeSiO reveal the emergence, decay, and renormalization of a longitudinal mode throughout the Brillouin zone. The decay of the longitudinal mode is particularly pronounced at the zone center. To account for the many-body effects of the interacting low-energy modes in anisotropic magnets, we generalize the standard spin-wave theory. The measured mode decay and renormalization is reproduced by including all one-loop corrections. The theoretical framework developed here is broadly applicable to quantum magnets with more than one type of low energy mode.
量子材料研究中一个持续存在的挑战是,在不同模式类型之间的相互作用很重要的自旋系统中揭示并解释集体量子效应。在这里,我们通过对接近连续量子相变的易平面量子磁体中相互作用的横向和纵向模式进行实验和理论相结合的研究来解决这个问题。我们对BaFeSiO的非弹性中子散射测量揭示了整个布里渊区纵向模式的出现、衰减和重整化。纵向模式的衰减在区中心尤为明显。为了解释各向异性磁体中相互作用的低能模式的多体效应,我们推广了标准的自旋波理论。通过包含所有单圈修正,再现了测量到的模式衰减和重整化。这里开发的理论框架广泛适用于具有不止一种低能模式类型的量子磁体。