Crystalline electric field excitations in Weyl semimetal \textit{R}AlSi (\textit{R} = Ce, Pr and Nd)
arXiv:2508.10675 · doi:10.1103/zxc4-6xvk
Abstract
The rare earth intermetallic system \textit{R}Al\textit{X} (\textit{R} = rare earth elements, \textit{X} = Si and Ge) is known to be a promising candidate of magnetic Weyl semimetal. Due to the complex interactions between the rare earth elements and surrounding atoms, as well as hybridization with itinerant electrons, this family likely possesses highly intriguing and novel magnetic structures and thus exhibits dynamic behaviors. We systematically probe polycrystalline samples of \textit{R}AlSi (\textit{R} = La, Ce, Pr and Nd) combining inelastic neutron scattering (INS), heat capacity and magnetic susceptibility measurements. The INS measurements identify well-resolved crystalline electric field (CEF) excitations at 19.2 and 24.9 meV in CeAlSi, at 5.4 meV in PrAlSi, and at 2.5 and 4.2 meV in NdAlSi. We analyzed the INS data using the corresponding CEF models and determined the CEF parameters and ground state wave functions of \textit{R}AlSi (\textit{R} = Ce, Pr and Nd). Our results suggest strong single-ion anisotropy in their ground states: (94.5\%) in CeAlSi, (99.2\%) in PrAlSi, and (76.2\%) in NdAlSi. Notably, the weaker anisotropy and strong exchange interactions in NdAlSi promote competing magnetic orders and CEF splitting at low temperature, contrasting with the robust CEF levels in magnetic states of CeAlSi and PrAlSi.
10 pages, 7 figures, Accepeted by Physical Review B
References in corpus (35)
- Mantid - Data Analysis and Visualization Package for Neutron Scattering and Experiments
- Weyl semimetal phase in non-centrosymmetric transition metal monophosphides
- Progress and prospects in magnetic topological materials
- Topological Magnetic Phase in the Candidate Weyl Semimetal CeAlGe
- PyCrystalField: Software for Calculation, Analysis, and Fitting of Crystal Electric Field Hamiltonians
- Interaction Driven Subgap Spin Exciton in the Kondo Insulator SmB6
- A new noncollinear ferromagnetic Weyl semimetal with anisotropic anomalous Hall effect
- Observation of Weyl fermions in a magnetic non-centrosymmetric crystal
- Intrinsic magnetic topological insulators
- Transition from Intrinsic to Extrinsic Anomalous Hall Effect in the Ferromagnetic Weyl Semimetal PrAlGeSi
- Topological spiral magnetism in the Weyl semimetal SmAlSi
- Spin Excitations and Spin Wave Gap in the Ferromagnetic Weyl Semimetal CoSnS
- Ferrimagnetic Regulation of Weyl Fermions in a Noncentrosymmetric Magnetic Weyl Semimetal
- Multiple Weyl fermions in the noncentrosymmetric semimetal LaAlSi
- Observation of Fermi arcs and Weyl nodes in a non-centrosymmetric magnetic Weyl semimetal
- Theory of Spin Exciton in the Kondo Semiconductor
- Topological features in the ferromagnetic Weyl semimetal CeAlSi: Role of domain walls
- Interplay of electronic and spin degrees in ferromagnetic SrRuO: anomalous softening of magnon gap and stiffness
- Mapping Domain Wall Topology in the Magnetic Weyl Semimetal CeAlSi
- Tuning the nontrivial topological properties of the Weyl semimetal CeAlSi
- Field-Induced Lifshitz Transition in the Magnetic Weyl Semimetal Candidate PrAlSi
- Chiral Dirac-like fermion in spin-orbit-free antiferromagnetic semimetals
- GdAlSi: An antiferromagnetic topological Weyl semimetal with non-relativistic spin splitting
- Signature of weakly coupled electrons and conduction electrons in magnetic Weyl semimetal candidates PrAlSi and SmAlSi
- Pressure tuning domain-wall chirality in noncentrosymmetric magnetic Weyl semimetal CeAlGe
- Chiral Dirac fermion in a collinear antiferromagnet
- Nonlinear optical diode effect in a magnetic Weyl semimetal
- Shubnikov-de Haas Oscillations and Nontrivial Topological State in a New Weyl Semimetal Candidate SmAlSi
- Optical signatures of type-II Weyl fermions in the noncentrosymmetric semimetals AlSi (=La, Ce, Pr, Nd, Sm)
- Upgrade of the MARI spectrometer at ISIS
- Nernst effect of high-mobility Weyl electrons in NdAlSi enhanced by a Fermi surface nesting instability
- Spin dynamics of a magnetic Weyl semimetal SrMnSb
- Abnormally enhanced Hall Lorenz number in the magnetic Weyl semimetal NdAlSi
- Spin order and dynamics in the topological rare-earth germanide semimetals
- Zone-selection effect of photoelectron intensity distributions in a nonsymmorphic system RAlSi (R : Ce and Nd)