Cavitation bubbles can be seeded from a plasma following optical breakdown, by focusing an intense laser in water. The fast dynamics are associated with extreme states of gas and liquid, especially in the nascent state. This offers a unique setting to probe water and water vapor far-from equilibrium. However, current optical techniques cannot quantify these early states due to contrast and resolution limitations. X-ray holography with single X-ray free-electron laser pulses has now enabled a quasi-instantaneous high resolution structural probe with contrast proportional to the electron density of the object. In this work, we demonstrate cone-beam holographic flash imaging of laser-induced cavitation bubbles in water with nanofocused X-ray f...
AbstractA temporal and spatial study of the dynamics of generated shock waves and cavitation bubbles...
Single-pulse holographic imaging at XFEL sources with 1012 photons delivered in pulses shorter than ...
We demonstrate X-ray phase contrast microscopy performed at the European X-ray Free-Electron Laser s...
Cavitation bubbles show many nonlinear characteristics of liquid and gas phase. Here the authors dem...
Extremely intense and ultrafast X-ray pulses from free-electron lasers offer unique opportunities to...
X-ray free-electron lasers (XFELs) have opened up unprecedented opportunities for time-resolved nano...
The experiments conducted in this study consisted of a series of plasma generated cavitation bubbles...
Coherent x-ray imaging represents a new window to imaging non-crystalline, biological specimens at u...
Laser-induced bubbles can be caused by an optical breakdown in water. They are a result of the optod...
We report on dynamical observations of femtosecond-laser-generated bubbles in water using a single-l...
We report on dynamical observations of femtosecond-laser-generated bubbles in water using a single-l...
Coherent x-ray imaging represents a new window to imaging noncrystalline, biological specimens at un...
X-ray Free-Electron Lasers have opened the door to a new era in structural biology, enabling imaging...
X-ray microscopy delivers insights into the structure of optically opaque bulk specimens with high s...
Radiation damage limits the resolution in imaging experiments. Damage is caused by energy deposited ...
AbstractA temporal and spatial study of the dynamics of generated shock waves and cavitation bubbles...
Single-pulse holographic imaging at XFEL sources with 1012 photons delivered in pulses shorter than ...
We demonstrate X-ray phase contrast microscopy performed at the European X-ray Free-Electron Laser s...
Cavitation bubbles show many nonlinear characteristics of liquid and gas phase. Here the authors dem...
Extremely intense and ultrafast X-ray pulses from free-electron lasers offer unique opportunities to...
X-ray free-electron lasers (XFELs) have opened up unprecedented opportunities for time-resolved nano...
The experiments conducted in this study consisted of a series of plasma generated cavitation bubbles...
Coherent x-ray imaging represents a new window to imaging non-crystalline, biological specimens at u...
Laser-induced bubbles can be caused by an optical breakdown in water. They are a result of the optod...
We report on dynamical observations of femtosecond-laser-generated bubbles in water using a single-l...
We report on dynamical observations of femtosecond-laser-generated bubbles in water using a single-l...
Coherent x-ray imaging represents a new window to imaging noncrystalline, biological specimens at un...
X-ray Free-Electron Lasers have opened the door to a new era in structural biology, enabling imaging...
X-ray microscopy delivers insights into the structure of optically opaque bulk specimens with high s...
Radiation damage limits the resolution in imaging experiments. Damage is caused by energy deposited ...
AbstractA temporal and spatial study of the dynamics of generated shock waves and cavitation bubbles...
Single-pulse holographic imaging at XFEL sources with 1012 photons delivered in pulses shorter than ...
We demonstrate X-ray phase contrast microscopy performed at the European X-ray Free-Electron Laser s...