An integrated technique of diamond-anvil cell, laser-heating and synchrotron x-ray diffraction technologies is capable of structural investigation of condensed matter in an extended region of high pressures and temperatures above 100 GPa and 3000 K. The feasibility of this technique to obtain reliable data, however, strongly depends on several experimental issues, including optical and x-ray setups, thermal gradients, pressure homogeneity, preferred orientation, and chemical reaction. In this paper, we discuss about these experimental issues together with future perspectives of this technique for obtaining accurate data
In this article, the specification and application of the new double-sided YAG laser-heating system ...
In this article, the specification and application of the new double-sided YAG laser-heating system ...
The laser heating system for the diamond anvil cell at endstation 2 of beamline 12.2.2 of the Advanc...
A system for high pressure synchrotron X-ray diffraction studies of biological samples in a diamond ...
The more than a century-old technique of X-ray diffraction in either angle or energy dispersive mode...
The more than a century-old technique of X-ray diffraction in either angle or energy dispersive mode...
The more than a century-old technique of X-ray diffraction in either angle or energy dispersive mode...
The more than a century-old technique of X-ray diffraction in either angle or energy dispersive mode...
The diamond anvil cell (DAC) technique combined with laser heating is one of the major methods for s...
Combination of in situ laser heating with single-crystal X-ray diffraction (scXRD) in diamond anvil ...
A resistively heated diamond-anvil cell has been used to achieve pressures of 110 kbar at temperatur...
We report a first combination of diamond anvil cell radial x-ray diffraction with in situ laser hea...
International audienceIn this article, the specification and application of the new double-sided YAG...
International audienceIn this article, the specification and application of the new double-sided YAG...
International audienceIn this article, the specification and application of the new double-sided YAG...
In this article, the specification and application of the new double-sided YAG laser-heating system ...
In this article, the specification and application of the new double-sided YAG laser-heating system ...
The laser heating system for the diamond anvil cell at endstation 2 of beamline 12.2.2 of the Advanc...
A system for high pressure synchrotron X-ray diffraction studies of biological samples in a diamond ...
The more than a century-old technique of X-ray diffraction in either angle or energy dispersive mode...
The more than a century-old technique of X-ray diffraction in either angle or energy dispersive mode...
The more than a century-old technique of X-ray diffraction in either angle or energy dispersive mode...
The more than a century-old technique of X-ray diffraction in either angle or energy dispersive mode...
The diamond anvil cell (DAC) technique combined with laser heating is one of the major methods for s...
Combination of in situ laser heating with single-crystal X-ray diffraction (scXRD) in diamond anvil ...
A resistively heated diamond-anvil cell has been used to achieve pressures of 110 kbar at temperatur...
We report a first combination of diamond anvil cell radial x-ray diffraction with in situ laser hea...
International audienceIn this article, the specification and application of the new double-sided YAG...
International audienceIn this article, the specification and application of the new double-sided YAG...
International audienceIn this article, the specification and application of the new double-sided YAG...
In this article, the specification and application of the new double-sided YAG laser-heating system ...
In this article, the specification and application of the new double-sided YAG laser-heating system ...
The laser heating system for the diamond anvil cell at endstation 2 of beamline 12.2.2 of the Advanc...