The advent of hard x-ray free-electron lasers (XFELs) has opened up a variety of scientific opportunities in areas as diverse as atomic physics, plasma physics, nonlinear optics in the x-ray range, and protein crystallography. In this article, we access a new field of science by measuring quantitatively the local bulk properties and dynamics of matter under extreme conditions, in this case by using the short XFEL pulse to image an elastic compression wave in diamond. The elastic wave was initiated by an intense optical laser pulse and was imaged at different delay times after the optical pump pulse using magnified x-ray phase-contrast imaging. The temporal evolution of the shock wave can be monitored, yielding detailed information on shock ...
Solid state material at high pressure is prevalent throughout the Universe, and an understanding of ...
Active research is ongoing that investigates the properties of matter under extreme pressure. Such c...
Under rapid high-temperature, high-pressure loading, lattices exhibit complex elastic-inelastic resp...
The advent of hard x-ray free-electron lasers (XFELs) has opened up a variety of scientific opportun...
The advent of hard x-ray free-electron lasers (XFELs) has opened up a variety of scientific opportun...
International audienceUnderstanding the behavior of matter at extreme pressures of the order of a me...
International audienceUnderstanding the behavior of matter at extreme pressures of the order of a me...
Understanding the behavior of matter at extreme pressures of the order of a megabar (Mbar) is essent...
Extremely intense and ultrafast X-ray pulses from free-electron lasers offer unique opportunities to...
Solid state material at high pressure is prevalent throughout the Universe, and an understanding of ...
International audienceA high-power, nanosecond pulsed laser impacting the surface of a material can ...
Under rapid high-temperature, high-pressure loading, lattices exhibit complex elastic-inelastic resp...
We study the feasibility of using small angle X-ray scattering (SAXS) as a new experimental diagnost...
Under rapid high-temperature, high-pressure loading, lattices exhibit complex elastic-inelastic resp...
Radiation damage limits the resolution in imaging experiments. Damage is caused by energy deposited ...
Solid state material at high pressure is prevalent throughout the Universe, and an understanding of ...
Active research is ongoing that investigates the properties of matter under extreme pressure. Such c...
Under rapid high-temperature, high-pressure loading, lattices exhibit complex elastic-inelastic resp...
The advent of hard x-ray free-electron lasers (XFELs) has opened up a variety of scientific opportun...
The advent of hard x-ray free-electron lasers (XFELs) has opened up a variety of scientific opportun...
International audienceUnderstanding the behavior of matter at extreme pressures of the order of a me...
International audienceUnderstanding the behavior of matter at extreme pressures of the order of a me...
Understanding the behavior of matter at extreme pressures of the order of a megabar (Mbar) is essent...
Extremely intense and ultrafast X-ray pulses from free-electron lasers offer unique opportunities to...
Solid state material at high pressure is prevalent throughout the Universe, and an understanding of ...
International audienceA high-power, nanosecond pulsed laser impacting the surface of a material can ...
Under rapid high-temperature, high-pressure loading, lattices exhibit complex elastic-inelastic resp...
We study the feasibility of using small angle X-ray scattering (SAXS) as a new experimental diagnost...
Under rapid high-temperature, high-pressure loading, lattices exhibit complex elastic-inelastic resp...
Radiation damage limits the resolution in imaging experiments. Damage is caused by energy deposited ...
Solid state material at high pressure is prevalent throughout the Universe, and an understanding of ...
Active research is ongoing that investigates the properties of matter under extreme pressure. Such c...
Under rapid high-temperature, high-pressure loading, lattices exhibit complex elastic-inelastic resp...