Azurite, a natural mineral made up of CuO chains, is also an intriguing spin-1/2 quantum magnet. There has been much debate as to the one-dimensional (1D) nature of this material by theorists and experimentalists alike. The focus of this debate lies in the interactions between Cu ions within the antiferromagnetically ordered state below 1.9 K. We present high-resolution inelastic neutron-scattering data that highlight the complexity of the magnetic ground state of azurite. The application of magnetic fields and temperatures were used to probe the excitations revealing important information about the dynamics in this system. From this we are able to conclude that the 1D Heisenberg antiferromagnetic spin chain model is not sufficient to descr...
Complex low-temperature ordered states in chiral magnets are typically governed by a competition bet...
Magnetic frustration, the competition among exchange interactions, often leads to novel magnetic gro...
International audienceSeveral Cu2+ hydroxide minerals have been recently identified as candidate rea...
Abstract. The natural mineral azurite Cu3(CO3)2(OH)2 is an interesting spin-1/2 quantum antiferromag...
Azurite is a natural mineral with a chemical structure Cu3(OH2)(CO3)2. This compound is a frustrated...
We present a Nuclear Magnetic Resonance (NMR) study of azurite, Cu3(CO3)2(OH)2, a quantum spin syste...
Nous présentons une étude par Résonance Magnétique Nucléaire (RMN) de l'azurite, Cu3(CO3)2(OH)2, un ...
Azurite is a dark blue mineral Cu3(OH2)(CO3)2 with the monoclinic structure. The discovery of an ant...
Cu2+ ions in the azurite Cu3(CO3)2(OH)2 form the diamond-chain, which is one of the geometrically fr...
Cu3(CO3)2(OH)2 (azurite), in which Cu2+ (S=1/2) monomers and dimers are arranged alternately along t...
The magnetic properties of CuO encompass several contemporary themes in condensed matter physics, in...
Since the last few decades frustrated spin systems have attracted much interest. These studies are m...
In this thesis different quasi one dimensional copper oxide systems were investigated by means of ne...
Anisotropic spin interactions beyond simple Heisenberg models have been intensively studied in recen...
High magnetic field ^<63,65>Cu NMR spectra were used to determine the local spin polarization in the...
Complex low-temperature ordered states in chiral magnets are typically governed by a competition bet...
Magnetic frustration, the competition among exchange interactions, often leads to novel magnetic gro...
International audienceSeveral Cu2+ hydroxide minerals have been recently identified as candidate rea...
Abstract. The natural mineral azurite Cu3(CO3)2(OH)2 is an interesting spin-1/2 quantum antiferromag...
Azurite is a natural mineral with a chemical structure Cu3(OH2)(CO3)2. This compound is a frustrated...
We present a Nuclear Magnetic Resonance (NMR) study of azurite, Cu3(CO3)2(OH)2, a quantum spin syste...
Nous présentons une étude par Résonance Magnétique Nucléaire (RMN) de l'azurite, Cu3(CO3)2(OH)2, un ...
Azurite is a dark blue mineral Cu3(OH2)(CO3)2 with the monoclinic structure. The discovery of an ant...
Cu2+ ions in the azurite Cu3(CO3)2(OH)2 form the diamond-chain, which is one of the geometrically fr...
Cu3(CO3)2(OH)2 (azurite), in which Cu2+ (S=1/2) monomers and dimers are arranged alternately along t...
The magnetic properties of CuO encompass several contemporary themes in condensed matter physics, in...
Since the last few decades frustrated spin systems have attracted much interest. These studies are m...
In this thesis different quasi one dimensional copper oxide systems were investigated by means of ne...
Anisotropic spin interactions beyond simple Heisenberg models have been intensively studied in recen...
High magnetic field ^<63,65>Cu NMR spectra were used to determine the local spin polarization in the...
Complex low-temperature ordered states in chiral magnets are typically governed by a competition bet...
Magnetic frustration, the competition among exchange interactions, often leads to novel magnetic gro...
International audienceSeveral Cu2+ hydroxide minerals have been recently identified as candidate rea...