In megabar shock waves, materials compress and undergo a phase transition to a dense charged-particle system that is dominated by strong correlations and quantum effects. This complex state, known as warm dense matter, exists in planetary interiors and many laboratory experiments (for example, during high-power laser interactions with solids or the compression phase of inertial confinement fusion implosions). Here, we apply record peak brightness X-rays at the Linac Coherent Light Source to resolve ionic interactions at atomic (ångström) scale lengths and to determine their physical properties. Our in situ measurements characterize the compressed lattice and resolve the transition to warm dense matter, demonstrating that short-range repulsi...
One of the grand challenges of contemporary physics is understanding strongly interacting quantum sy...
We have studied the dynamics of warm dense Li with near-elastic x-ray scattering. Li foils were heat...
Recent experiments performed at the Matter in Extreme Conditions end station of the Linac Coherent L...
We have developed a new experimental platform at the Linac Coherent Light Source (LCLS) which combin...
The strong ion-ion correlation peak characteristic of warm dense matter (WDM) is observed for the fi...
The matter in extreme conditions end station at the Linac Coherent Light Source (LCLS) is a new tool...
Warm dense matter is an area of the phase diagram between solids and classical plasmas, but poorly ...
Matter with a high energy density (>10(5) joules per cm(3)) is prevalent throughout the Universe,...
Spectrally resolved scattering of ultrafast K-a x-rays has provided experimental validation of the m...
Using simultaneous spectrally, angularly, and temporally resolved x-ray scattering, we measure the p...
We present the first collective x-ray scattering measurements of plasmons in solid-density plasmas. ...
In this work we demonstrate spectrally resolved x-ray scattering from electron-plasma waves in shock...
In the last few years, high power lasers have demonstrated the possibility to explore a new state of...
We present the first collective x-ray scattering measurements of plasmons in solid-density plasmas. ...
The warm dense matter regime (WDM), defined by temperatures of a few electron volts and densities co...
One of the grand challenges of contemporary physics is understanding strongly interacting quantum sy...
We have studied the dynamics of warm dense Li with near-elastic x-ray scattering. Li foils were heat...
Recent experiments performed at the Matter in Extreme Conditions end station of the Linac Coherent L...
We have developed a new experimental platform at the Linac Coherent Light Source (LCLS) which combin...
The strong ion-ion correlation peak characteristic of warm dense matter (WDM) is observed for the fi...
The matter in extreme conditions end station at the Linac Coherent Light Source (LCLS) is a new tool...
Warm dense matter is an area of the phase diagram between solids and classical plasmas, but poorly ...
Matter with a high energy density (>10(5) joules per cm(3)) is prevalent throughout the Universe,...
Spectrally resolved scattering of ultrafast K-a x-rays has provided experimental validation of the m...
Using simultaneous spectrally, angularly, and temporally resolved x-ray scattering, we measure the p...
We present the first collective x-ray scattering measurements of plasmons in solid-density plasmas. ...
In this work we demonstrate spectrally resolved x-ray scattering from electron-plasma waves in shock...
In the last few years, high power lasers have demonstrated the possibility to explore a new state of...
We present the first collective x-ray scattering measurements of plasmons in solid-density plasmas. ...
The warm dense matter regime (WDM), defined by temperatures of a few electron volts and densities co...
One of the grand challenges of contemporary physics is understanding strongly interacting quantum sy...
We have studied the dynamics of warm dense Li with near-elastic x-ray scattering. Li foils were heat...
Recent experiments performed at the Matter in Extreme Conditions end station of the Linac Coherent L...