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In comparison to 3d or 4f metals, magnetism in actinides remains poorly understood due to experimental complications and the exotic behavior of the 5f states. In particular, plutonium metal is most especially vexing. Over the last five…

Strongly Correlated Electrons · Physics 2008-12-22 G. van der Laan , K. T. Moore

Actinide elements produce a plethora of interesting physical behaviors due to the 5f states. This review compiles and analyzes progress in understanding of the electronic and magnetic structure of the 5f states in actinide metals.…

Strongly Correlated Electrons · Physics 2009-11-13 Kevin T. Moore , Gerrit van der Laan

In actinide systems, the 5f electrons experience a uniquely delicate balance of effects and interactions having similar energy scales, which are often difficult to properly disentangle. This interplay of factors such as the dual nature of…

Strongly Correlated Electrons · Physics 2024-03-05 Binod K. Rai , Alex Bretana , Gregory Morrison , Ryan Greer , Krzysztof Gofryk , Hans-Conrad zur Loye

The goal to describe plutonium phases from ``first principles'' calculation methods is complicated by the problem of 5f-electrons localization. While for early actinides (Th, U,Np) standard DFT (Density Functional Theory) description with…

Strongly Correlated Electrons · Physics 2018-11-01 V. I. Anisimov , A. O. Shorikov , J. Kuneš

The unusual properties of elemental plutonium have long been a puzzle. It has been suggested that these properties may be related to quantum criticality [G. Chapline, J. L. Smith LA Sci 26 (2000) 1]. In this talk we will describe some…

Materials Science · Physics 2007-05-23 G. Chapline , M. Fluss , S. McCall

Most elemental metals under ambient conditions adopt simple structures such as BCC, FCC and HCP in specific groupings across the Periodic Table, and on compression, many of these elements undergo transitions to surprisingly complex…

Materials Science · Physics 2022-06-27 Yuanhui Sun , Lei Zhao , Chris J. Pickard , Russell J. Hemley , Yonghao Zheng , Maosheng Miao

Actinide and lanthanide-based materials display exotic properties that originate from the presence of itinerant or localized f-electrons and include unconventional superconductivity and magnetism, hidden order; and heavy fermion behavior.…

Materials Science · Physics 2021-02-26 Ayana Ghosh , Filip Ronning , Serge Nakhmanson , Jian-Xin Zhu

Plutonium displays phase transitions with enormous volume differences among its phases and both its Pauli like magnetic susceptibility and resistivity are an order of magnitude larger than those of simple metals. Curium is also highly…

Strongly Correlated Electrons · Physics 2009-11-11 J. H. Shim , K. Haule , G. Kotliar

Uranium and plutonium's 5f electrons are tenuously poised between strongly bonding with ligand spd-states and residing close to the nucleus. The unusual properties of these elements and their compounds (eg. the six different allotropes of…

Actinide elements, such as uranium and plutonium, and their compounds are best known as nuclear materials. When engineering optimal fuel materials for nuclear power, important thermophysical properties to be considered are melting point and…

Strongly Correlated Electrons · Physics 2015-05-20 Quan Yin , Andrey Kutepov , Kristjan Haule , Gabriel Kotliar , Sergey Y. Savrasov , Warren E. Pickett

The ground state electronic structures of the actinide oxides AO, A2O3 and AO2 (A=U, Np, Pu, Am, Cm, Bk, Cf) are determined from first-principles calculations, using the self-interaction corrected local spin-density (SIC-LSD) approximation.…

Strongly Correlated Electrons · Physics 2015-05-13 L. Petit , A. Svane , Z. Szotek , W. M. Temmerman , G. M. Stocks

Plutonium is the most exotic and mysterious element in the periodic table. It has 6 metallic phases and peculiar physical properties not yet understood. One of the most intriguing properties of Pu is that relatively small changes of…

Strongly Correlated Electrons · Physics 2015-05-11 Nicola Lanatà , Yong-Xin Yao , Cai-Zhuang Wang , Kai-Ming Ho , Gabriel Kotliar

Electronic correlations associated with incipient magnetism have long been recognized as an important factor in stabilizing the largest atomic volume $\delta$ phase of plutonium, yet their strength compared to those in the rare earths and…

Strongly Correlated Electrons · Physics 2022-01-10 M. Wartenbe , P. H. Tobash , J. Singleton , L. E. Winter , S. Richmond , N. Harrison

We have carried out a first principles study of the elastic properties and electronic structure for two room-temperature stable Pt silicide phases, tetragonal alpha-Pt_2Si and orthorhombic PtSi. We have calculated all of the equilibrium…

Materials Science · Physics 2009-10-31 O. Beckstein , J. E. Klepeis , G. L. W. Hart , O. Pankratov

We present a detailed quantum mechanical non empirical DFT investigation of the energy-optimized geometries, phase stabilities and electronic properties of bulk Pt3N, PtN and PtN2 in a set of twenty different crystal structures. Structural…

Materials Science · Physics 2013-01-24 Mohammed S. H. Suleiman , Daniel P. Joubert

The thermodynamic stabilities of various phases of the nitrides of the platinum metal elements are systematically studied using density functional theory. It is shown that for the nitrides of Rh, Pd, Ir and Pt two new crystal structures, in…

Materials Science · Physics 2010-09-03 Daniel Åberg , Babak Sadigh , Jonathan Crowhurst , Alexander F. Goncharov

An understanding of the phase diagram of elemental plutonium (Pu) must include both the effects of the strong directional bonding and the high density of states of the Pu 5f electrons, as well as how that bonding weakens under the influence…

Strongly Correlated Electrons · Physics 2015-06-18 Jian-Xin Zhu , R. C. Albers , K. Haule , G. Kotliar , J. M. Wills

Plutonium (Pu), in which the 5$f$ valence electrons always wander the boundary between localized and itinerant states, exhibits quite complex crystal structures and unprecedentedly anomalous properties with respect to temperature and…

Strongly Correlated Electrons · Physics 2020-03-26 Li Huang , Haiyan Lu

Titanium nitride halides, TiNX (X = F, Cl, Br, I) in the {\alpha}-phase (orthorhombic) are exciting quasi two-dimensional (2D) electronic systems exhibiting a fascinating series of electronic ground states under different conditions.…

Materials Science · Physics 2020-04-22 M. M. Hossain , S. H. Naqib

Actinide-based compounds exhibit unique physics due to the presence of 5f electrons, and serve in many cases as important technological materials. Targeted thin film synthesis of actinide materials has been successful in generating…

Materials Science · Physics 2022-11-23 K. D. Vallejo , F. Kabir , N. Poudel , C. A. Marianetti , D. H. Hurley , P. J. Simmonds , C. A. Dennett , K. Gofryk
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