Phase separation and extreme sensitivity to disorder and defects are key features of electronic order near quantum phase transitions. Neutron depolarization imaging and neutron Larmor diffraction are new experimental techniques capable of providing detailed real-space and reciprocal-space information, respectively, on the existence and nature of phase separations. Proof-of-principle depolarization imaging in Pd1-x Ni (x) , CePd1-x Rh (x) and NbFe2 suggests distinct differences of the real-space distribution of ferromagnetic moments and Curie temperatures in materials at ferromagnetic quantum phase transitions. This compares with neutron Larmor diffraction which provides high-resolution reciprocal-space information of phase separation and th...
The electronic properties of heavy fermion alloys are dominated by spin fluctuations which are expec...
International audienceWe report specific heat and neutron scattering experiments performed on the sy...
Hidden-order phases that occur in a number of correlated f-electron systems are among the most elusi...
Phase separation and extreme sensitivity to disorder and defects are key features of electronic orde...
We report selected experimental results on the spin dynamics and spin freezing at ferromagnetic quan...
Second-order phase transitions involve critical fluctuations just below and above the transition tem...
Many transition metal oxide materials of high chemical purity are not necessarily monophasic. Thus, ...
Many transition metal oxide materials of high chemical purity are not necessarily monophasic. Thus, ...
It is a tough task to distinguish a short range ferromagnetically correlated cluster glass phase fr...
Hidden order phases that occur in a number of correlated f electron systems are among the most elusi...
International audienceIn condensed matter, phase separation is strongly related to ferroelasticity, ...
The vicinity of quantum phase transitions has proven fertile ground in the search for new quantum ph...
A quantum phase transition is a phase transition at absolute zero occurring under variations in an e...
Polarized neutron diffraction (PND) is a powerful method to investigate magnetic structures. It give...
The electronic properties of heavy fermion alloys are dominated by spin fluctuations which are expec...
International audienceWe report specific heat and neutron scattering experiments performed on the sy...
Hidden-order phases that occur in a number of correlated f-electron systems are among the most elusi...
Phase separation and extreme sensitivity to disorder and defects are key features of electronic orde...
We report selected experimental results on the spin dynamics and spin freezing at ferromagnetic quan...
Second-order phase transitions involve critical fluctuations just below and above the transition tem...
Many transition metal oxide materials of high chemical purity are not necessarily monophasic. Thus, ...
Many transition metal oxide materials of high chemical purity are not necessarily monophasic. Thus, ...
It is a tough task to distinguish a short range ferromagnetically correlated cluster glass phase fr...
Hidden order phases that occur in a number of correlated f electron systems are among the most elusi...
International audienceIn condensed matter, phase separation is strongly related to ferroelasticity, ...
The vicinity of quantum phase transitions has proven fertile ground in the search for new quantum ph...
A quantum phase transition is a phase transition at absolute zero occurring under variations in an e...
Polarized neutron diffraction (PND) is a powerful method to investigate magnetic structures. It give...
The electronic properties of heavy fermion alloys are dominated by spin fluctuations which are expec...
International audienceWe report specific heat and neutron scattering experiments performed on the sy...
Hidden-order phases that occur in a number of correlated f-electron systems are among the most elusi...