International audienceThe Raman frequencies of diamond subjected to non-hydrostatic uniaxial stress along the [001] and [111] crystallographic axes have been calculated with density-functional-theory methods and the results fitted to a simple analytical form. The data are analyzed in the context of the recently proposed use of the shift of the high-frequency edge of the Raman band of diamond as a pressure scale in diamond-anvil cell experiments. Combining theoretical and experimental data, we are able to determine the stress state of the diamond anvil in ultra-high-pressure experiments. We find that shear stresses close to the tip of the anvil can reach values exceeding 1 Mbar
The thesis is divided into two major areas of study. Part 1 consists of a computer-aided design stud...
The thesis is divided into two major areas of study. Part 1 consists of a computer-aided design stud...
International audienceThis study aims at providing an accurate method to determine in situ the press...
International audienceThe Raman frequencies of diamond subjected to non-hydrostatic uniaxial stress ...
International audienceThe Raman frequencies of diamond subjected to non-hydrostatic uniaxial stress ...
International audienceThe Raman frequencies of diamond subjected to non-hydrostatic uniaxial stress ...
International audienceThe Raman frequencies of diamond subjected to non-hydrostatic uniaxial stress ...
The Raman frequencies of diamond subjected to non-hydrostatic uniaxial stress along the [001] and [1...
High pressure diagnostics for pulsed power high energy density physics experiments require time-reso...
A review with 133 References of the application of vibrational spectroscopy at high pressures to the...
A review with 133 References of the application of vibrational spectroscopy at high pressures to the...
A review with 133 References of the application of vibrational spectroscopy at high pressures to the...
Vibrational Spectroscopy at High External Pressures: The Diamond Anvil Cell presents the effects of ...
The thesis is divided into two major areas of study. Part 1 consists of a computer-aided design stud...
The thesis is divided into two major areas of study. Part 1 consists of a computer-aided design stud...
The thesis is divided into two major areas of study. Part 1 consists of a computer-aided design stud...
The thesis is divided into two major areas of study. Part 1 consists of a computer-aided design stud...
International audienceThis study aims at providing an accurate method to determine in situ the press...
International audienceThe Raman frequencies of diamond subjected to non-hydrostatic uniaxial stress ...
International audienceThe Raman frequencies of diamond subjected to non-hydrostatic uniaxial stress ...
International audienceThe Raman frequencies of diamond subjected to non-hydrostatic uniaxial stress ...
International audienceThe Raman frequencies of diamond subjected to non-hydrostatic uniaxial stress ...
The Raman frequencies of diamond subjected to non-hydrostatic uniaxial stress along the [001] and [1...
High pressure diagnostics for pulsed power high energy density physics experiments require time-reso...
A review with 133 References of the application of vibrational spectroscopy at high pressures to the...
A review with 133 References of the application of vibrational spectroscopy at high pressures to the...
A review with 133 References of the application of vibrational spectroscopy at high pressures to the...
Vibrational Spectroscopy at High External Pressures: The Diamond Anvil Cell presents the effects of ...
The thesis is divided into two major areas of study. Part 1 consists of a computer-aided design stud...
The thesis is divided into two major areas of study. Part 1 consists of a computer-aided design stud...
The thesis is divided into two major areas of study. Part 1 consists of a computer-aided design stud...
The thesis is divided into two major areas of study. Part 1 consists of a computer-aided design stud...
International audienceThis study aims at providing an accurate method to determine in situ the press...