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Magnetic frustration induced by applied magnetic fields in CeRhIn5
Quantum critical points (QCPs) have attracted continuous scientific interest due to the emergent phenomena observed in their vicinity, including unconventional superconductivity... -
True symmetry of correlated Dirac and Weyl semimetal candidates CeSbSe and Ce...
We have recently performed a magnetic neutron scattering study at WISH to understand the unusual metamagnetic behaviour of the Dirac semimetal candidate CeSbSe. Unexpectedly,... -
Magnetic ground states of URu2(Si,P)2
In URu2Si2, heavy fermion superconductivity emerges out of an unusual "hidden order" (HO) phase. This contradicts the paradigm that unconventional superconductivity occurs in... -
Mapping the magnon spectra in the skyrmion phase of MnSi
In cubic B20 structures, skyrmions, topologically-protected three-dimensional spin textures, arise from competition of the ferromagnetic exchange interaction and the... -
Role of electronic nematicity in the complex magnetism of heavy fermion CeAuS...
CeAuSb2 is a rare earth intermetallic with mesoscale spin-density wave (SDW) magnetic order below 6.6 K. Starting from a simple single-q SDW phase, application of a magnetic... -
Magnetic order of correlated hourglass fermion candidate Eu5In2Sb5
A new kind of topologically protected electronic state has been predicted in crystals whose surfaces form atomic patterns with certain non-symmorphic symmetries. Eu5In2Sb6 is... -
Stationary Spin Waves in the Skyrmion Crystal
The inter-metallic B20 compound MnSi is of great interest as a magnetic model system exhibiting helical spin ordering and topologically non-trivial spin correlations. The... -
Devil's staircase in the Kondo lattice semimetal CeSbSe
We propose to determine the magnetic structure of a new material, CeSbSe, at zero field and in magnetic fields up to 3 T, using the unique capabilities of the WISH... -
Devil's staircase in the Kondo lattice semimetal CeSbSe
We propose to determine the magnetic structure of a new material, CeSbSe, at zero field and in magnetic fields up to 3 T, using the unique capabilities of the WISH...