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Inter-American Materials Collaboration (CIAM): Probing Quantum Phase Transitions by MuSR and Complementary Methods in Applied Pressure

Inter-American Materials Collaboration (CIAM): Probing Quantum Phase Transitions by MuSR and Complementary Methods in Applied Pressure
美洲材料合作组织 (CIAM):通过 MuSR 和施加压力的补充方法探测量子相变
批准号:
0502706
负责人:
Yasutomo Uemura
金额:
$49.51万
依托单位:
依托单位国家:
美国
项目类别:
Continuing Grant
财政年份:
2005
资助国家:
美国
项目状态:
已结题
起止时间:
2005-06-01 至 2009-05-31

项目摘要

项目成果

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中文摘要
翻译
这个美洲材料合作(CIAM)项目旨在研究量子相变和相关电子系统的量子临界行为,通过开发一种新的高压测量光谱仪,并在温哥华的TRIUMF (Vancouver)进行协作μ子自旋弛豫(mSR)实验,以及输运(多伦多)、磁化(肯肯州)和Moessbauer和摄动角相关(PAC) (cbpf -巴西)的补充研究。mSR在测量(1)磁性有序区域的体积分数方面比其他微观方法(中子散射和核磁共振)有优势;(2)极小/随机/稀矩磁序;(3)超导系统中磁场穿透深度的绝对值。凭借这些独特的能力,该项目将阐明:(a) MnSi和ZrZn2从流动电子铁磁性到相关顺磁性的交叉;(b) CeCu2Si2中磁性与超导性的相互作用;(c) URu2Si2中“隐序”态与反铁磁态之间的竞争;(d)金属间Ce化合物的磁有序系统;(e) Ca2RuO4中压力诱导的Mott转变。该项目还将促进来自美国、加拿大、巴西和阿根廷的有经验的和年轻的科学家,包括来自代表性不足群体的一些科学家,参与广泛的国际合作。拟议的工作将在温哥华、肯塔基州和里约热内卢的独特设施中进行,同时丰富哥伦比亚大学、肯塔基大学以及加拿大、巴西和阿根廷的其他参与机构的研究生和本科生教学资源。μ子自旋弛豫(mSR)、穆斯堡尔效应(Moessbauer effect)和摄动角相关(PAC)是基于粒子/核物理学的技术和原理,应用于固态物理中磁性和超导性研究的有力方法。目前的项目是一个美洲材料合作项目(CIAM),由来自美国、加拿大、巴西和阿根廷的科学家和学生共同合作。来自哥伦比亚大学和肯塔基大学的一组研究人员将开发在高压下测量mSR信号的能力,并使用加拿大温哥华的加速器设施TRIUMF进行mSR实验。该项目还包括在巴西CBPF-Rio的Moessbauer和PAC测量,以及在阿根廷、多伦多、纽约和肯塔基州的其他补充研究。这些技术将应用于现代固体物理学的专题研究。目标是了解材料系统中表现出的新现象,其中强电子相关性在决定超导和磁性能方面起主要作用。该项目将支持来自美国、加拿大、巴西和阿根廷的高级、初级科学家和学生,包括一些来自代表性不足群体的科学家,同时丰富参与机构的研究生和本科教学资源。
英文摘要
This Inter-American Materials Collaboration (CIAM) project aims to study quantum phase transitions and quantum critical behaviors of correlated electron systems by developing a new spectrometer for high-pressure measurements and performing collaborative muon spin relaxation (mSR) experiments at TRIUMF (Vancouver), together with complementary studies of transport (Toronto), magnetization (Kentucky), and Moessbauer and Perturbed Angular Correlation (PAC) (CBPF-Brazil). mSR has advantages over other microscopic methods (neutron scattering and NMR), in measurements of (1) volume fraction of magnetically ordered regions; (2) magnetic orderof very small / random / dilute moments; and (3) the absolute values of the magnetic field penetration depth in superconducting systems. With these unique capabilities, this project would elucidate: (a) the crossover from itinerant electron ferromagnetism to correlated paramagnetism in MnSi and ZrZn2; (b) interplay of magnetism and superconductivity in CeCu2Si2; (c) competition between the "hidden order" and antiferromagnetic states in URu2Si2; (d) magnetic-ordering systematics of intermetallic Ce compounds; and (e) pressure-induced Mott transition in Ca2RuO4. This project would also promote the participation of experienced as well as young scientists from the US, Canada, Brazil, and Argentina, including several scientists from under-represented groups, in extensive international collaboration. The proposed work will be performed at unique facilities in Vancouver, Kentucky, and Rio de Janeiro, while enriching graduate and undergraduate teaching resources of Columbia Univesity, University of Kentucky, and other participating institutions in Canada, Brazil, and Argentina.Muon Spin Relaxation (mSR), Moessbauer effect, and Perturbed Angular Correlations (PAC) are powerful methods based on technologies and principles from particle/nuclear physics applied to the study of magnetism and superconductivity in solid state physics. The present project is an Inter-American Materials Collaboration (CIAM) in which scientists and students from the US, Canada, Brazil, and Argentina work together. A team of researchers from Columbia University and University of Kentucky will develop capabilities for measuring mSR signals at high applied pressure and perform mSR experiments using TRIUMF, a Canadian accelerator facility in Vancouver. The project also involves Moessbauer and PAC measurements at CBPF-Rio in Brazil, and other complementary studies in Argentina, Toronto, New York, and Kentucky. These techniques will be applied to topical subjects of modern solid-state physics. The goal is to understand novel phenomena exhibited by materials systems in which strong electron correlations play a major role in determining the superconducting and magnetic properties. This project will support senior, junior scientists and students from the US, Canada, Brazil, and Argentina, including several scientists from under-represented groups, while enriching graduate and undergraduate teaching resources of the involved institutions.
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会议论文
MuSR and multi-probe studies of spin-charge interplays in emergent quantum phenomena
  • 批准号:
    2104661
  • 项目类别:
    Standard Grant
  • 资助金额:
    $48.51万
  • 财政年份:
    2023
  • 负责人:
    Yasutomo Uemura
  • 依托单位:
Quantum Phase Transitions in Mott Insulator Systems and Itinerant-Electron Magnets: MuSR Studies of Magnetic Order, Volume Evolution and Spin Fluctuations
  • 批准号:
    1610633
  • 项目类别:
    Standard Grant
  • 资助金额:
    $35.6万
  • 财政年份:
    2016
  • 负责人:
    Yasutomo Uemura
  • 依托单位:
DMREF/Collaborative Research: Designing, Understanding and Functionalizing Novel Superconductors and Magnetic Derivatives
  • 批准号:
    1436095
  • 项目类别:
    Standard Grant
  • 资助金额:
    $24.0万
  • 财政年份:
    2014
  • 负责人:
    Yasutomo Uemura
  • 依托单位:
MuSR Studies of Exotic Spin and Charge Behaviors in Novel Superconductors, Metals, and Semiconductors
  • 批准号:
    1105961
  • 项目类别:
    Continuing Grant
  • 资助金额:
    $53.0万
  • 财政年份:
    2011
  • 负责人:
    Yasutomo Uemura
  • 依托单位:
海外基金