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相关论文: The silver route to cuprate analogs

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The highly unusual divalent silver in silver difluoride (AgF$_2$) features a nearly square lattice of Ag$^{+2}$ bridged by fluorides. As a structural and electronic analogue of cuprates, its superconducting properties are yet to be…

超导电性 · 物理学 2022-05-04 Xiaoqiang Liu , Shishir K. Pandey , Ji Feng

It has long been a challenging task to find compounds with similar crystal and electronic structures as cuprate superconductors with low dimensionality and strong antiferromagnetic fluctuations. The parent compounds of cuprate…

超导电性 · 物理学 2020-05-07 Xinlei Zhao , Fengjie Ma , Zhong-Yi Lu , Tao Xiang

AgF2 has been proposed as a cuprate analogue which requires strong correlation and marked covalence. On the other hand, fluorides are usually quite ionic and 4d transition metals tend to be less correlated than their 3d counterparts, which…

AgF$_2$ is a correlated charge-transfer insulator with properties remarkably similar to insulating cuprates which have raised hope that it may lead to a new family of unconventional superconductors upon doping. We use ab initio computations…

强关联电子 · 物理学 2021-06-16 Subrahmanyam Bandaru , Mariana Derzsi , Adam Grzelak , Jose Lorenzana , Wojciech Grochala

In cuprate superconductors superconductivity develops as a unique cross over between the two extremal phases characterizing these compounds. The extremal phases are known to be an antiferromagnetic (AF) Mott insulator one, on one side, and…

超导电性 · 物理学 2007-05-23 Mladen Prester

While the parent compounds of the cuprate high temperature superconductors (high-Tc's) are Mott insulators, the iron-pnictide high-Tc's are in the vicinity of a metallic spin density wave (SDW) state, which highlights the difference between…

We report a genuine phase diagram for a disorder-free CuO_2 plane based on the precise evaluation of the local hole density (N_h) by site-selective Cu-NMR studies on five-layered high-Tc cuprates. It has been unraveled that (1) the…

超导电性 · 物理学 2012-03-22 H. Mukuda , Y. Yamaguchi , S. Shimizu , Y. Kitaoka , P. M. Shirage , A. Iyo

AgF2 is a layered material and a correlated charge transfer insulator with an electronic structure very similar to the parent compounds of cuprate high-Tc superconductors. It is also interesting for being a powerful oxidizer. Here we…

材料科学 · 物理学 2020-10-28 Wojciech Wegner , Kamil Tokár , Jose Lorenzana , Mariana Derzsi , Wojciech Grochala

Bi-based cuprate superconductors are important materials for both fundamental research and applications. As in other cuprates, the superconducting phase in the Bi compounds lies close to an antiferromagnetic phase. Our density functional…

超导电性 · 物理学 2020-07-07 J. Nokelainen , C. Lane , R. S. Markiewicz , B. Barbiellini , A. Pulkkinen , B. Singh , J. Sun , K. Pussi , A. Bansil

Although the mechanism of superconductivity in the cuprates remains elusive, it is generally agreed that at the heart of the problem is the physics of doped Mott insulators. The cuprate parent compound has one unpaired electron per Cu site,…

强关联电子 · 物理学 2013-01-30 Cun Ye , Peng Cai , Runze Yu , Xiaodong Zhou , Wei Ruan , Qingqing Liu , Changqing Jin , Yayu Wang

The correlation and competition between antiferromagnetism and superconductivity are one of the most fundamental issues in all of high temperature superconductors. The superconductivity in high temperature cuprate superconductors arises…

超导电性 · 物理学 2012-04-11 Y. J. Yan , M. Zhang , A. F. Wang , J. J. Ying , Z. Y. Li , W. Qin , X. G. Luo , J. Q. Li , Jiangping Hu , X. H. Chen

Charge transfer (CT) insulators are the parent phase of a large group of today's unconventional high-temperature superconductors. Here we study experimentally and theoretically the interband excitations of the CT insulator silver fluoride…

Copper(II) silver(II) sulfate crystallizes in a monoclinic CuSO4-related structure with P21/n symmetry. This quasi-ternary compound features [Ag(SO4)2]2- layers, while the remaining cationic sites may be occupied either completely or…

材料科学 · 物理学 2023-10-16 Mateusz Domanski , Zoran Mazej , Wojciech Grochala

Although the precise mechanism of high-Tc superconductivity in the layered cuprates remains unknown, it is generally thought that strong 2D Heisenberg antiferromagnetism combined with disruptive hole doping is an essential aspect of the…

We report a site selective Cu-NMR study on under-doped Hg-based five-layered high-$T_{\rm c}$ cuprate HgBa2Ca4Cu5Oy with a Tc=72 K. Antiferromagnetism (AF) has been found to take place at TN=290 K, exhibiting a large antiferromagnetic…

超导电性 · 物理学 2012-03-22 H. Mukuda , M. Abe , Y. Araki , Y. Kitaoka , K. Tokiwa , T. Watanabe , A. Iyo , H. Kito , Y. Tanaka

In addition to higher Tc compared with the ubiquitous cuprates for a material composed of a single electronically active layer, the newly discovered LnFeAsO superconductors offer additional compositional variation. In a similar fashion to…

超导电性 · 物理学 2008-12-17 Q. Huang , Y. Qiu , Wei Bao , J. W. Lynn , M. A. Green , Y. Chen , T. Wu , G. Wu , X. H. Chen

This ``Perspective'' briefly reviews recent work showing that a class of organic superconductors have important similarities to the cuprate superconductors: (i) There is competition betweeen superconductivity and antiferromagnetism. (ii)…

强关联电子 · 物理学 2009-10-31 Ross H. McKenzie

We investigate the electronic structure of AgF2, AgFBF4, AgF and Ag2O using X-ray absorption spectroscopy (XAS) and resonant inelastic X-ray scattering (RIXS) at the Ag L3 edge. XAS results were compared with density functional theory…

Holes doped into the CuO2 planes of cuprate parent compounds frustrate the antiferromagnetic order. The development of spin and charge stripes provides a compromise between the competing magnetic and kinetic energies. Static stripe order…

超导电性 · 物理学 2015-03-19 John M. Tranquada

We propose two possible new compounds, Ba$_2$CuO$_2$Fe$_2$As$_2$ and K$_2$CuO$_2$Fe$_2$Se$_2$, which hybridize the building blocks of two high temperature superconductors, cuprates and iron-based superconductors. These compounds consist of…

超导电性 · 物理学 2016-06-14 Xia Dai , Congcong Le , Xianxin Wu , Jiangping Hu
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