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The abrupt drop of resistance to zero at a critical temperature is a key signature of the current paradigm of the metal–superconductor transition. However, the emergence of an intermediate bosonic insulating state characterized by a resistance peak preceding the onset of the superconducting transition has challenged this traditional understanding. Notably, this phenomenon has been predominantly observed in disordered or chemically doped low-dimensional systems, raising intriguing questions about the generality of the effect and its underlying fundamental physics. Here, we present a systematic experimental study of compressed elemental sulfur, an undoped three-dimensional (3D) high-pressure superconductor, with detailed measurements of electrical resistance as a function of temperature, magnetic field, and current. The anomalous resistance peak observed in this 3D system is interpreted based on an empirical model of a metal–bosonic insulator–superconductor transition, potentially driven by vortex dynamics under magnetic field and energy dissipation processes. These findings offer a fresh platform for theoretical analysis of the decades-long enigmatic of the underlying mechanism of this phenomenon.more » « less
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Liu, Zunyong; Hou, Shuguo; Rodrigues, Olivier; Wang, Ping; Luo, Dexian; Munemasa, Shintaro; Lei, Jiaxin; Liu, Jun; Ortiz-Morea, Fausto Andres; Wang, Xin; et al (, Nature)
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Zou, Yike; Yang, Song; Sanders, Jacob N.; Li, Wei; Yu, Peiyuan; Wang, Hongbo; Tang, Zhijun; Liu, Wen; Houk, K. N. (, Journal of the American Chemical Society)null (Ed.)
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