A novel design of a 1-D imaging X-ray spectrometer is implemented, using a high efficiency HOPG (highly oriented pyrolitic graphite) Bragg crystal and a double-entrance-slit. The double slit provides self-calibration of the imaging magnification. The spatial and spectral resolutions and dispersion are characterised both analytically and by ray tracing simulations. A key feature of this approach is that it enables the X-ray spectrum to be measured over different regions of the plasma source. The application of this instrument is demonstrated in high intensity laser-foil interaction experiments
Compact high-resolution X-ray spectrometers with a one-dimensional tempera-ture gradient at the anal...
An etched multilayer, a 2D structure fabricated by etching a periodic multilayer according to the pa...
X-ray spectroscopy is an essential tool in high temperature plasma research. We describe a time-reso...
A novel wide angle spectrometer has been implemented with a highly oriented pyrolytic graphite cryst...
X-ray Thomson scattering (XRTS) is a powerful technique for measuring state variables in dense plasm...
We are developing x-ray Thomson scattering for applications in implosion experiments at the National...
Observation of x-ray line emissions are valuable for determining the thermodynamic state of the emit...
A novel technique for a high-precision large acceptance determination of the Bragg angle in crystal ...
We have built an absolutely calibrated, highly efficient, Bragg crystal spectrometer in von Hamos ge...
The design of imaging x-ray crystal spectrometers for the diagnostics of extended plasma sources, su...
We have built an x-ray spectrometer in a von Hamos configuration based on a highly annealed pyrolyti...
A new parallel-beam wavelength dispersive (PB-WDS) X-ray emission spectrometer was constructed at th...
Imaging x-ray fluorescence generally generates a conflict between the best image quality or highest ...
High resolution (λ/Δ#3;λ ~ 10 000) 1D imaging x-ray spectroscopy using a spherically bent crystal an...
In the experimental investigations of inertial confinement fusion, the laser-produced high-temperatu...
Compact high-resolution X-ray spectrometers with a one-dimensional tempera-ture gradient at the anal...
An etched multilayer, a 2D structure fabricated by etching a periodic multilayer according to the pa...
X-ray spectroscopy is an essential tool in high temperature plasma research. We describe a time-reso...
A novel wide angle spectrometer has been implemented with a highly oriented pyrolytic graphite cryst...
X-ray Thomson scattering (XRTS) is a powerful technique for measuring state variables in dense plasm...
We are developing x-ray Thomson scattering for applications in implosion experiments at the National...
Observation of x-ray line emissions are valuable for determining the thermodynamic state of the emit...
A novel technique for a high-precision large acceptance determination of the Bragg angle in crystal ...
We have built an absolutely calibrated, highly efficient, Bragg crystal spectrometer in von Hamos ge...
The design of imaging x-ray crystal spectrometers for the diagnostics of extended plasma sources, su...
We have built an x-ray spectrometer in a von Hamos configuration based on a highly annealed pyrolyti...
A new parallel-beam wavelength dispersive (PB-WDS) X-ray emission spectrometer was constructed at th...
Imaging x-ray fluorescence generally generates a conflict between the best image quality or highest ...
High resolution (λ/Δ#3;λ ~ 10 000) 1D imaging x-ray spectroscopy using a spherically bent crystal an...
In the experimental investigations of inertial confinement fusion, the laser-produced high-temperatu...
Compact high-resolution X-ray spectrometers with a one-dimensional tempera-ture gradient at the anal...
An etched multilayer, a 2D structure fabricated by etching a periodic multilayer according to the pa...
X-ray spectroscopy is an essential tool in high temperature plasma research. We describe a time-reso...