Yang Zhuo, Marcenat Christophe, Kim Sunghoon, Imajo Shusaku, Kimata Motoi, Nomura Toshihiro, De Muer Albin, Maude Duncan K, Iga Fumitoshi, Klein Thierry, Chowdhury Debanjan, Kohama Yoshimitsu
Institute for Solid State Physics, The University of Tokyo, Kashiwa, Chiba, 277-8581, Japan.
Univ. Grenoble Alpes, CEA, Grenoble INP, IRIG, Pheliqs, 38000, Grenoble, France.
Nat Commun. 2024 Sep 12;15(1):7801. doi: 10.1038/s41467-024-52017-x.
The mixed-valence compound YbB displays paradoxical quantum oscillations in electrical resistivity and magnetic torque in a regime with a well-developed insulating charge gap and in the absence of an electronic Fermi surface. However, signatures of such unusual fermionic quasiparticles in other bulk thermodynamic observables have been missing. Here we report the observation of a series of sharp double-peak features in the specific heat as a function of the magnetic field. The measured Hall resistivity evolves smoothly across the field values at which the characteristic anomalies appear in the thermodynamic response and rules out the possibility of conventional electrons as their origin. Our observations of thermodynamic anomalies in a bulk three-dimensional electrical insulator provide the evidence for the presence of emergent dispersing fermionic excitations within the insulating bulk, which sets the stage for further investigation of electron fractionalization in other correlated mixed-valence compounds.
混合价化合物YbB在具有充分发展的绝缘电荷能隙且不存在电子费米面的区域中,在电阻率和磁转矩方面表现出反常的量子振荡。然而,在其他体热力学可观测量中尚未发现这种异常费米子准粒子的特征。在此,我们报告了在比热随磁场变化的关系中观察到一系列尖锐的双峰特征。测量得到的霍尔电阻率在热力学响应中出现特征异常的磁场值范围内平滑变化,排除了传统电子作为其起源的可能性。我们在体三维电绝缘体中对热力学异常的观测,为绝缘体内出现的色散费米子激发提供了证据,这为进一步研究其他相关混合价化合物中的电子分数化奠定了基础。