FL* Interpretation of a Dichotomy in the Spin Susceptibility of the Cuprates

IF 1.9 Q3 PHYSICS, CONDENSED MATTER Condensed Matter Pub Date : 2023-03-23 DOI:10.3390/condmat8020030
P. Marchetti
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Abstract

We propose that some dichotomic Fermi liquid versus non-Fermi liquid behaviours of physical quantities in hole-doped cuprates can be explained in terms of the FL* fractionalized Fermi liquid concept, introduced some years ago, even beyond the region of underdoping. The particle excitations of this FL* system are the holon carrying charge, the spinon carrying spin 1/2, gauge fluctuations coupling them and the hole as a spinon–holon bound state or resonance due to gauge binding. In our proposal, physical responses have a Fermi-liquid-type behaviour if they are dominated by the hole resonance, whereas a non-Fermi liquid behaviour appears if they are dominated by spinon–spinon (and possibly also holon–holon) gauge interactions. The specific case of spin susceptibility in the so-called "strange metal phase" is discussed. The uniform susceptibility turns out to be hole-dominated, the spin-lattice relaxation rate in the Cu sites is spinon-dominated.
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FL*解释铜离子自旋敏感性的二分法
我们提出,在空穴掺杂的铜酸盐中,物理量的一些二分费米液体与非费米液体的行为可以用几年前引入的FL*分数费米液体概念来解释,甚至可以在欠掺杂区域之外。该FL*系统的粒子激发是携带电荷的holon、携带自旋1/2的spinon、将它们与空穴耦合为spinon-holon束缚态或由于规范束缚引起的共振的规范涨落。在我们的提议中,如果物理响应由空穴共振主导,则它们具有费米液体型行为,而如果它们由旋子-旋子(可能还有holon-holon)规范相互作用主导,则出现非费米液体行为。讨论了所谓“奇异金属相”中自旋磁化率的具体情况。结果表明,均匀磁化率是空穴主导的,Cu位点的自旋晶格弛豫率是旋子主导的。
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来源期刊
Condensed Matter
Condensed Matter PHYSICS, CONDENSED MATTER-
CiteScore
2.90
自引率
11.80%
发文量
58
审稿时长
10 weeks
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