Understanding the nature of charge density waves (CDW) in cuprate superconductors has been complicated by material specific differences. A striking example is the opposite doping dependence of the CDW ordering wavevector in La-based and Y-based compounds, the two families where charge ordering is strongest and best characterized. Here we report a combined resonant soft X-ray scattering (RSXS) and neutron scattering study of charge and spin density waves in isotopically enriched La$_{1.8-x}$ Eu$_{0.2}$ Sr$_{x}$ CuO$_{4}$ over a range of doping $0.07 \leq x \leq 0.20$. For all dopings studied by RSXS, we find that the CDW amplitude is approximately temperature-independent and develops well above experimentally accessible temperatures. Surpris...
The presence of different electronic orders other than superconductivity populating the phase diagra...
The presence of different electronic orders other than superconductivity populating the phase diagra...
The presence of different electronic orders other than superconductivity populating the phase diagra...
Although all superconducting cuprates display charge-ordering tendencies, their low-temperature prop...
The unconventional normal-state properties of the cuprates are often discussed in terms of emergent ...
Although all superconducting cuprates display charge-ordering tendencies, their low-temperature prop...
Although all superconducting cuprates display charge-ordering tendencies, their low-temperature prop...
Although all superconducting cuprates display charge-ordering tendencies, their low-temperature prop...
High-temperature superconductivity, with transition temperatures up to ≈134 K at ambient pressure, o...
High-temperature superconductivity, with transition temperatures up to ≈134 K at ambient pressure, o...
Although all superconducting cuprates display charge-ordering tendencies, their low-temperature prop...
The coupling of spin, charge and lattice degrees of freedom results in the emergence of novel states...
Although CDW correlations are a ubiquitous feature of the superconducting cuprates, their disparate ...
The coupling of spin, charge and lattice degrees of freedom results in the emergence of novel states...
Cuprate high temperature superconductors have been the subject of intense investigation since their ...
The presence of different electronic orders other than superconductivity populating the phase diagra...
The presence of different electronic orders other than superconductivity populating the phase diagra...
The presence of different electronic orders other than superconductivity populating the phase diagra...
Although all superconducting cuprates display charge-ordering tendencies, their low-temperature prop...
The unconventional normal-state properties of the cuprates are often discussed in terms of emergent ...
Although all superconducting cuprates display charge-ordering tendencies, their low-temperature prop...
Although all superconducting cuprates display charge-ordering tendencies, their low-temperature prop...
Although all superconducting cuprates display charge-ordering tendencies, their low-temperature prop...
High-temperature superconductivity, with transition temperatures up to ≈134 K at ambient pressure, o...
High-temperature superconductivity, with transition temperatures up to ≈134 K at ambient pressure, o...
Although all superconducting cuprates display charge-ordering tendencies, their low-temperature prop...
The coupling of spin, charge and lattice degrees of freedom results in the emergence of novel states...
Although CDW correlations are a ubiquitous feature of the superconducting cuprates, their disparate ...
The coupling of spin, charge and lattice degrees of freedom results in the emergence of novel states...
Cuprate high temperature superconductors have been the subject of intense investigation since their ...
The presence of different electronic orders other than superconductivity populating the phase diagra...
The presence of different electronic orders other than superconductivity populating the phase diagra...
The presence of different electronic orders other than superconductivity populating the phase diagra...