Complex States, Emergent Phenomena & Superconductivity in Intermetallic & Metal-like Compounds
Personnel
Project Leader(s):
Paul Canfield
Principal Investigators:
Sergey Bud'ko, Paul Canfield, John Clem, David Johnston, Adam Kaminski, Vladimir Kogan, Ruslan Prozorov, Makariy Tanatar,
Kyuil Cho, Abhishek Pandey
Overview
The specific scientific question to be addressed by this Project is—can we develop, discover, understand and ultimately control, and predictably modify new and extreme examples of complex states, emergent phenomena, and superconductivity? Materials manifesting clear or compelling examples (or combinations) of superconductivity, strongly correlated electrons, quantum criticality, and exotic, bulk magnetism are of particular interest given their potential to lead to revolutionary steps forward in our understanding of their complex, and potentially energy relevant, properties. Experiment and theory are implemented synergistically. The experimental work consists of new materials development and crystal growth, combined with detailed and advanced measurements of microscopic, thermodynamic, and transport properties, as well as electronic structure, at extremes of pressure, temperature, magnetic field and resolution. The theoretical work focuses on modeling transport, thermodynamic and spectroscopic properties using world-leading, phenomenological approaches to superconductors and modern quantum many-body theory.
The ability to address these questions is illustrated by this group’s past work on many of the key systems and phenomena that have defined this field over the past decades: High Tc oxide, RNi2B2C and MgB2 superconductivity, Ce-, Yb- and transition metal-based heavy fermions, quantum criticality, quasicrystals, spin glasses, spin ladders / spin chains, vortex and domain pattern formation, ferromagnetism and metamagnetism.
- Design and growth (P. C. Canfield, S. Bud’ko, D. C. Johnston, J. Schmalian,V. Kogan)
- Advanced Characterization (S. Bud’ko, Y. Furukawa, A. Kaminski, R. Prozorov, M. Tanatar)
- Theory and modeling (J. R. Clem, V. Kogan, J. Schmalian)
Highlights
Publications
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Konczykowski M; van der Beek C J; Tanatar M A; Luo H Q; Wang Z S; Shen B; Wen H H; Prozorov R . 2012. Vortex creep and critical current densities in superconducting (Ba,K)Fe2As2 single crystals. Physical Review B. 86:024515. abstract
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Hashimoto K; Cho K; Shibauchi T; Kasahara S; Mizukami Y; Katsumata R; Tsuruhara Y; Terashima T; Ikeda H; Tanatar M A; Kitano H; Salovich N; Giannetta R W; Walmsley P; Carrington A; Prozorov R; Matsuda Y . 2012. A Sharp Peak of the Zero-Temperature Penetration Depth at Optimal Composition in BaFe2(As1-xPx)(2). Science. 336:1554-1557. abstract
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Das R K; Islam Z; Ruff J P C; Sawh R P; Weinstein R; Canfield P C; Kim J W; Lang J C . 2012. A novel approach for x-ray scattering experiments in magnetic fields utilizing trapped flux in type-II superconductors. Review of Scientific Instruments. 83:065103. abstract
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Anand V K; Perera P K; Pandey A; Goetsch R J; Kreyssig A; Johnston D C . 2012. Crystal growth and physical properties of SrCu2As2, SrCu2Sb2, and BaCu2Sb2. Physical Review B. 85:214523. abstract
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Haskel D; Kravtsov E; Choi Y; Lang J C; Islam Z; Srajer G; Jiang J S; Bader S D; Canfield P C . 2012. Charge-magnetic interference resonant scattering studies of ferromagnetic crystals and thin films. European Physical Journal-Special Topics. 208:141-155. abstract
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Ran S; Bud'ko S L; Straszheim W E; Soh J; Kim M G; Kreyssig A; Goldman A I; Canfield P C . 2012. Control of magnetic, nonmagnetic, and superconducting states in annealed Ca(Fe1-xCox)(2)As-2. Physical Review B. 85:224528. abstract
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Arham H Z; Hunt C R; Park W K; Gillett J; Das S D; Sebastian S E; Xu Z J; Wen J S; Lin Z W; Li Q; Gu G; Thaler A; Ran S; Bud'ko S L; Canfield P C; Chung D Y; Kanatzidis M G; Greene L H . 2012. Detection of orbital fluctuations above the structural transition temperature in the iron pnictides and chalcogenides. Physical Review B. 85:214515. abstract
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Galvis J A; Crespo M; Guillamon I; Suderow H; Vieira S; Hernandez M G; Bud'ko S; Canfield P C . 2012. Magnetic and superconducting phase diagrams in ErNi2B2C. Solid State Communications. 152:1076-1079. abstract
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Toft-Petersen R; Andersen N H; Li H F; Li J Y; Tian W; Bud'ko S L; Jensen T B S; Niedermayer C; Laver M; Zaharko O; Lynn J W; Vaknin D . 2012. Magnetic phase diagram of magnetoelectric LiMnPO4. Physical Review B. 85:224415. abstract
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