Entanglement is a crucial resource for quantum information processing and its detection and quantification is of paramount importance in many areas of current research. Weakly coupled molecular nanomagnets provide an ideal test bed for investigating entanglement between complex spin systems. However, entanglement in these systems has only been experimentally demonstrated rather indirectly by macroscopic techniques or by fitting trial model Hamiltonians to experimental data. Here we show that four-dimensional inelastic neutron scattering enables us to portray entanglement in weakly coupled molecular qubits and to quantify it. We exploit a prototype (Cr 7 Ni) 2 supramolecular dimer as a benchmark to demonstrate the potential of this approach,...
Inelastic neutron scattering, probing the temporal spin¿spin correlation at the microscopic scale, i...
We demonstrate how quantum entanglement can be directly witnessed in the quasi 1D Heisenberg antifer...
Supramolecular chemistry enables nanoscale engineering of scalable structures,by introducing contro...
Molecular nanomagnets (MNMs) have attracted the attention of the scientific community as the rich ph...
The lack of methods to experimentally detect and quantify entanglement in quantum matter impedes our...
We characterize supramolecular magnetic structures, consisting of two weakly coupled antiferromagnet...
We characterize supramolecular magnetic structures, consisting of two weakly coupled antiferromagnet...
The development of direct probes of entanglement is integral to the rapidly expanding field of compl...
Magnetic molecules, modelled as finite-size spin systems, are test-beds for quantum phenomena and co...
The discovery of magnetic bistability in Mn12 more than 20 years ago marked the birth of molecular m...
The development of qualitatively new measurement capabilities is often a prerequisite for critical s...
Molecular nanomagnets are attractive candidate qubits because of their wide inter- and intra-molecul...
We demonstrate that two well-established experimental techniques of condensed-matter physics, neutro...
Several recent experiments on liquid and solid samples containing protons or deuterons show an inter...
Quantum spin clusters provide a new platform for the experimental study of many-body entanglement. H...
Inelastic neutron scattering, probing the temporal spin¿spin correlation at the microscopic scale, i...
We demonstrate how quantum entanglement can be directly witnessed in the quasi 1D Heisenberg antifer...
Supramolecular chemistry enables nanoscale engineering of scalable structures,by introducing contro...
Molecular nanomagnets (MNMs) have attracted the attention of the scientific community as the rich ph...
The lack of methods to experimentally detect and quantify entanglement in quantum matter impedes our...
We characterize supramolecular magnetic structures, consisting of two weakly coupled antiferromagnet...
We characterize supramolecular magnetic structures, consisting of two weakly coupled antiferromagnet...
The development of direct probes of entanglement is integral to the rapidly expanding field of compl...
Magnetic molecules, modelled as finite-size spin systems, are test-beds for quantum phenomena and co...
The discovery of magnetic bistability in Mn12 more than 20 years ago marked the birth of molecular m...
The development of qualitatively new measurement capabilities is often a prerequisite for critical s...
Molecular nanomagnets are attractive candidate qubits because of their wide inter- and intra-molecul...
We demonstrate that two well-established experimental techniques of condensed-matter physics, neutro...
Several recent experiments on liquid and solid samples containing protons or deuterons show an inter...
Quantum spin clusters provide a new platform for the experimental study of many-body entanglement. H...
Inelastic neutron scattering, probing the temporal spin¿spin correlation at the microscopic scale, i...
We demonstrate how quantum entanglement can be directly witnessed in the quasi 1D Heisenberg antifer...
Supramolecular chemistry enables nanoscale engineering of scalable structures,by introducing contro...