High resolution pressure measurements in the zero-temperature limit provide a unique opportunity to study the behavior of strongly interacting, itinerant electrons with coupled spin and charge degrees of freedom. Approaching the precision that has become the hallmark of experiments on classical critical phenomena, we characterize the quantum critical behavior of the model, elemental antiferromagnet chromium, lightly doped with vanadium. We resolve the sharp doubling of the Hall coefficient at the quantum critical point and trace the dominating effects of quantum fluctuations up to surprisingly high temperatures
A fundamental problem posed from the study of correlated electron compounds, of which heavy-fermion ...
We explore the behavior of the nested bandstructure of chromium as a function of temperature and pre...
We explore the behavior of the nested bandstructure of chromium as a function of temperature and pre...
High resolution pressure measurements in the zero-temperature limit provide a unique opportunity to ...
The elemental antiferromagnet Cr at high pressure presents a new type of naked quantum critical poin...
Elemental chromium orders antiferromagnetically near room temperature, but the ordering temperature ...
Elemental chromium orders antiferromagnetically near room temperature, but the ordering temperature ...
The spin- and charge-density-wave order parameters of the itinerant antiferromagnet chromium are dir...
Advances in solid-state and atomic physics are exposing the hidden relationships between conventiona...
The spin- and charge-density-wave order parameters of the itinerant antiferromagnet chromium are dir...
The spin- and charge-density-wave order parameters of the itinerant antiferromagnet chromium are dir...
Advances in solid-state and atomic physics are exposing the hidden relationships between conventiona...
Advances in solid-state and atomic physics are exposing the hidden relationships between conventiona...
Antiferromagnets are choice systems to study quantum critical behavior. Unlike ferromagnets, they ca...
We explore the behavior of the nested bandstructure of chromium as a function of temperature and pre...
A fundamental problem posed from the study of correlated electron compounds, of which heavy-fermion ...
We explore the behavior of the nested bandstructure of chromium as a function of temperature and pre...
We explore the behavior of the nested bandstructure of chromium as a function of temperature and pre...
High resolution pressure measurements in the zero-temperature limit provide a unique opportunity to ...
The elemental antiferromagnet Cr at high pressure presents a new type of naked quantum critical poin...
Elemental chromium orders antiferromagnetically near room temperature, but the ordering temperature ...
Elemental chromium orders antiferromagnetically near room temperature, but the ordering temperature ...
The spin- and charge-density-wave order parameters of the itinerant antiferromagnet chromium are dir...
Advances in solid-state and atomic physics are exposing the hidden relationships between conventiona...
The spin- and charge-density-wave order parameters of the itinerant antiferromagnet chromium are dir...
The spin- and charge-density-wave order parameters of the itinerant antiferromagnet chromium are dir...
Advances in solid-state and atomic physics are exposing the hidden relationships between conventiona...
Advances in solid-state and atomic physics are exposing the hidden relationships between conventiona...
Antiferromagnets are choice systems to study quantum critical behavior. Unlike ferromagnets, they ca...
We explore the behavior of the nested bandstructure of chromium as a function of temperature and pre...
A fundamental problem posed from the study of correlated electron compounds, of which heavy-fermion ...
We explore the behavior of the nested bandstructure of chromium as a function of temperature and pre...
We explore the behavior of the nested bandstructure of chromium as a function of temperature and pre...