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Geometrically frustrated magnetic structures of the heavy-fermion compound CePdAl studied by powder neutron diffraction

TLDR
The heavy-fermion compound CePdAl with ZrNiAl-type crystal structure (hexagonal space group) was investigated by powder neutron diffraction and the experimentally determined magnetic structure is in agreement with group theoretical symmetry analysis considerations, calculated by the program MODY, which confirm that for Ce(2) an ordered magnetic moment parallel to the magnetically easy c-axis is forbidden by symmetry as mentioned in this paper.
Abstract
The heavy-fermion compound CePdAl with ZrNiAl-type crystal structure (hexagonal space group ) was investigated by powder neutron diffraction. The triangular coordination symmetry of magnetic Ce atoms on site 3f gives rise to geometrical frustration. CePdAl orders below with an incommensurate antiferromagnetic propagation vector , and a longitudinal sine-wave (LSW) modulated spin arrangement. Magnetically ordered moments at Ce(1) and Ce(3) coexist with frustrated disordered moments at Ce(2). The experimentally determined magnetic structure is in agreement with group theoretical symmetry analysis considerations, calculated by the program MODY, which confirm that for Ce(2) an ordered magnetic moment parallel to the magnetically easy c-axis is forbidden by symmetry. Further low-temperature experiments give evidence for a second magnetic phase transition in CePdAl between 0.6 and 1.3 K. Magnetic structures of CePdAl are compared with those of the isostructural compound TbNiAl, where a non-zero ordered magnetic moment for the geometrically frustrated Tb(2) atoms is allowed by symmetry.

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Review on magnetic and related properties of RTX compounds

TL;DR: In this paper, the authors present a review of all the important results obtained in this family, particularly in the last few years, by means of a variety of techniques/measurements such as X-ray diffraction, neutron diffraction and NQR.
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Frustration and quantum criticality.

TL;DR: This review article is devoted to the interplay between frustrated magnetism and quantum critical phenomena, covering both theoretical concepts and ideas as well as recent experimental developments in correlated-electron materials.
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Partial Kondo Screening in Frustrated Kondo Lattice Systems

TL;DR: An emergent quantum phase with partial ordering is revealed in which the frustration is relieved by forming a magnetic order on a sublattice and leaving the rest in the Kondo screening with spin-singlet formation.
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Cerium intermetallics with ZrNiAl-type structure – a review

TL;DR: In this paper, equiatomic CeTX intermetallics with the hexagonal ZrNiAl type structure are formed with electron-rich transition metals (T) and X = Mg, Zn, Cd, Al, Ga, In, Tl, Sn, and Pb.
Journal ArticleDOI

Frustration and quantum criticality

TL;DR: In this article, the interplay between frustrated magnetism and quantum critical phenomena is studied, covering both theoretical concepts and ideas as well as recent experimental developments in correlated-electron materials.
References
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Journal ArticleDOI

Recent advances in magnetic structure determination by neutron powder diffraction

TL;DR: In this article, the main formulas governing the analysis of the Bragg magnetic scattering are summarized and shortly discussed and the method of profile fitting without a structural model to get precise integrated intensities and refine the propagation vector(s) of the magnetic structure is discussed.
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Neutron scattering lengths and cross sections

TL;DR: The application of thermal neutron scattering to the study of the structure and dynamics of condensed matter requires a knowledge of the scattering lengths and the corresponding scattering and absorption cross sections of the elements as discussed by the authors.
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Anomalous properties of Ce-Cu- and Yb-Cu-based compounds

TL;DR: A survey of experimental findings for Ce-Cu- and Yb-Cu based compounds is given in this paper, where a successful description of the observed behaviour is possible in terms of the Coqblin-Schrieffer model, which is based on the Anderson Hamiltonian which is more general than the Kondo Hamiltonian.
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A versatile double-axis multicounter neutron powder diffractometer

TL;DR: The double-axis multicounter diffractometer (DMC) installed at the 10MW reactor SAPHIR (PSI) has been designed as a good-flux, good-resolution (presently Δd/d ⩾ 4×10−3) neutron powder diffractometers as discussed by the authors.
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On new ternary aluminides LnPdAl and LnPtAl

TL;DR: In this article, the compounds LnPdAl (Ln  Ce, Pr, Nd) were found to crystallize in the hexagonal Fe2P structure, probably in the ordered ZrNiAl variant.
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