Entangled-plaquette Variational Monte Carlo studies of strongly correlated electronic systems
Entangled-plaquette Variational Monte Carlo studies of strongly correlated electronic systems
批准号:
261547-2013
负责人:
Boninsegni, Massimo
金额:
$2.4万
依托单位:
依托单位国家:
加拿大
项目类别:
Discovery Grants Program - Individual
财政年份:
2014
资助国家:
加拿大
项目状态:
已结题
起止时间:
2014-01-01 至 2015-12-31
中文摘要
对26年前发现的氧化铜化合物的高温超导性的物理机制的理解,仍然是凝聚态理论研究的一个突出和有价值的目标。事实上,人们普遍认为,现象学中最重要的方面可以用存在于这些材料中的强电子相关性来解释。然而,即使是最简单的强相关电子晶格模型的相图的精确测定,如t-J或Hubbard模型,它们被认为是捕捉高温超导体的基本物理,到目前为止,即使是最复杂的现有分析和数值计算工具,也被证明是一项任务。事实上,关于t-J和哈伯德模型是否具有超导基态,仍然没有达成一致;所有与实验直接相关的重要问题,如条纹的出现或低空穴掺杂中相分离的发生,仍在激烈争论中。
英文摘要
The understanding of the physical mechanism underlying superconductivity at high temperature, in the copper-oxide compounds discovered 26 years ago, remains an outstanding and worthwhile goal of research in condensed matter theory. There is virtually universal agreement that the most important aspects of the phenomenology can be accounted for by strong electronic correlations existing in these materials. However, the accurate determination of the phase diagram of even the simplest lattice models of strongly correlated electrons, such as the t-J or Hubbard model, which are believed to capture the basic physics of high-temperature superconductors, has so far proven a task beyond the capability of even the most sophisticated existing analytical and numerical computational tools. Indeed, there continues to be no agreement as to whether the t-J and Hubbard model feature a superconducting ground state; all-important issues of direct experimental relevance, such as the appearance of stripes or the occurrence of phase separation at low hole doping, are still hotly debated.
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Entangled-plaquette Variational Monte Carlo studies of strongly correlated electronic systems
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批准号:1000201495-2002
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财政年份:2005
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Theoretical studies of adsorption of quantum fluids inside carbon nanotubes
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批准号:261547-2003
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海外基金