Within the last decades low-dimensional frustrated quantum spin systems have attracted great interest in the field of modern research. In these systems a competition of various magnetic interactions takes place, leading to an energetically degenerated magnetic ground state, and thus to the occurrence of exotic, unconventional physical properties at low temperatures. This thesis focuses on the quasi one-dimensional frustrated spin chain system linarite, PbCuSO4(OH)2. In this compound the basic building blocks are CuO4 plaquettes which are connected to each other along one crystallographic direction, analogue to a chain. The frustration in linarite is established due to the competition between the magnetic interactions. The nearest-neighbor ...
PbCu(SeO4)(OH)2, the selenate sibling of the mineral linarite, was synthesized hydrothermally, inves...
The field of frustration in quantum magnetism is an active area of interdisciplinary research which ...
The frustrated one-dimensional quantum magnet LiCuSbO4 is a rare realization of the J1−J2 spin chain...
Within the last decades low-dimensional frustrated quantum spin systems have attracted great interes...
We report on a detailed neutron diffraction and 1H NMR study on the frustrated spin 1 2 chain materi...
We report on a detailed neutron diffraction and H1-NMR study on the frustrated spin-1/2 chain materi...
We present an extensive microscopic magnetic study of the quasi-one-dimensional frustrated s = 1/2 s...
We present a detailed study in the paramagnetic regime of the frustrated s = 1/2 spin-compound linar...
We present a comprehensive macroscopic thermodynamic study of the quasi-one-dimensional (1D) s = 1/2...
We present a detailed study in the paramagnetic regime of the frustrated s 1 2 spin compound linarit...
We present a comprehensive macroscopic thermodynamic study of the quasi one dimensional 1D s 1 2...
Low temperature neutron diffraction and NMR studies of field induced phases in linarite are presente...
© 2017 American Physical Society. In this joint experimental and theoretical work magnetic propertie...
International audienceThe mineral linarite, PbCuSO4(OH)2, is a spin-1/2 chain with frustrating neare...
Here we present inelastic neutron scattering measurements from the frustrated, quantum spin 1 2 chai...
PbCu(SeO4)(OH)2, the selenate sibling of the mineral linarite, was synthesized hydrothermally, inves...
The field of frustration in quantum magnetism is an active area of interdisciplinary research which ...
The frustrated one-dimensional quantum magnet LiCuSbO4 is a rare realization of the J1−J2 spin chain...
Within the last decades low-dimensional frustrated quantum spin systems have attracted great interes...
We report on a detailed neutron diffraction and 1H NMR study on the frustrated spin 1 2 chain materi...
We report on a detailed neutron diffraction and H1-NMR study on the frustrated spin-1/2 chain materi...
We present an extensive microscopic magnetic study of the quasi-one-dimensional frustrated s = 1/2 s...
We present a detailed study in the paramagnetic regime of the frustrated s = 1/2 spin-compound linar...
We present a comprehensive macroscopic thermodynamic study of the quasi-one-dimensional (1D) s = 1/2...
We present a detailed study in the paramagnetic regime of the frustrated s 1 2 spin compound linarit...
We present a comprehensive macroscopic thermodynamic study of the quasi one dimensional 1D s 1 2...
Low temperature neutron diffraction and NMR studies of field induced phases in linarite are presente...
© 2017 American Physical Society. In this joint experimental and theoretical work magnetic propertie...
International audienceThe mineral linarite, PbCuSO4(OH)2, is a spin-1/2 chain with frustrating neare...
Here we present inelastic neutron scattering measurements from the frustrated, quantum spin 1 2 chai...
PbCu(SeO4)(OH)2, the selenate sibling of the mineral linarite, was synthesized hydrothermally, inves...
The field of frustration in quantum magnetism is an active area of interdisciplinary research which ...
The frustrated one-dimensional quantum magnet LiCuSbO4 is a rare realization of the J1−J2 spin chain...