Semeniuk Konstantin, Chang Hui, Baglo Jordan, Friedemann Sven, Tozer Stanley W, Coniglio William A, Gamża Monika B, Reiss Pascal, Alireza Patricia, Leermakers Inge, McCollam Alix, Grockowiak Audrey D, Grosche F Malte
Cavendish Laboratory, University of Cambridge, Cambridge CB3 0HE, United Kingdom.
Max Planck Institute for Chemical Physics of Solids, Dresden 01187, Germany.
Proc Natl Acad Sci U S A. 2023 Sep 19;120(38):e2301456120. doi: 10.1073/pnas.2301456120. Epub 2023 Sep 11.
The Mott metal-insulator transition represents one of the most fundamental phenomena in condensed matter physics. Yet, basic tenets of the canonical Brinkman-Rice picture of Mott localization remain to be tested experimentally by quantum oscillation measurements that directly probe the quasiparticle Fermi surface and effective mass. By extending this technique to high pressure, we have examined the metallic state on the threshold of Mott localization in clean, undoped crystals of NiS. We find that i) on approaching Mott localization, the quasiparticle mass is strongly enhanced, whereas the Fermi surface remains essentially unchanged; ii) the quasiparticle mass closely follows the divergent form predicted theoretically, establishing charge carrier slowdown as the driver for the metal-insulator transition; iii) this mass divergence is truncated by the metal-insulator transition, placing the Mott critical point inside the insulating section of the phase diagram. The inaccessibility of the Mott critical point in NiS parallels findings at the threshold of ferromagnetism in clean metallic systems, in which criticality at low temperature is almost universally interrupted by first-order transitions or novel emergent phases such as incommensurate magnetic order or unconventional superconductivity.
莫特金属-绝缘体转变是凝聚态物理中最基本的现象之一。然而,莫特局域化的标准布林克曼-赖斯图像的基本原理仍有待通过量子振荡测量进行实验验证,这些测量可直接探测准粒子费米面和有效质量。通过将该技术扩展到高压,我们研究了纯净、未掺杂的硫化镍晶体中莫特局域化阈值处的金属态。我们发现:i)在接近莫特局域化时,准粒子质量大幅增强,而费米面基本保持不变;ii)准粒子质量紧密遵循理论预测的发散形式,确立了电荷载流子减速是金属-绝缘体转变的驱动因素;iii)这种质量发散被金属-绝缘体转变截断,将莫特临界点置于相图的绝缘区域内。硫化镍中莫特临界点难以达到,这与纯净金属系统中铁磁性阈值处的发现类似,在这些系统中,低温下的临界性几乎普遍被一阶相变或新出现的相(如非公度磁序或非常规超导)打断。