0000000001177339

AUTHOR

T. Westerhoff

High-pressure Raman scattering of the stretching mode in nitrogen along the 300-K isotherm

We present Raman scattering studies of the vibrational band of nitrogen at room temperature between 1 and 31 GPa allowing a detailed line-shape analysis. For the fluid and \ensuremath{\beta} phases the vibrational linewidths compare to dephasing rates ${\mathit{T}}_{2}^{\mathrm{\ensuremath{-}}1}$ determined by experiments in the time domain. The \ensuremath{\delta}-\ensuremath{\epsilon} transition is unmistakably marked by a drop of the vibrational linewidths around 17 GPa. A further transition into the \ensuremath{\eta} phase around 20 GPa proposed from previous Raman results can be ruled out. Additionally, clear evidence is found for a dynamical freezing of the ${\mathrm{N}}_{2}$ molecule…

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High-pressure Raman study of theN2stretching vibration in argon-nitrogen mixtures at room temperature

We present room-temperature Raman investigations of the nitrogen molecule stretching vibration in ${\mathrm{Ar}}_{1\mathrm{\ensuremath{-}}\mathit{x}}$(${\mathrm{N}}_{2}$${)}_{\mathit{x}}$ from x=1 to x=0.59 in the pressure range 1\ensuremath{\le}p\ensuremath{\le}31 GPa. Ar substitution leads to an inhomogeneous broadening of the vibrational signal. The \ensuremath{\beta}-\ensuremath{\delta} phase transition of pure ${\mathrm{N}}_{2}$ is shifted to higher pressures for x=0.75. The substituted Ar atoms preferentially occupy the 2a sites of the cubic elementary cell of the orientationally disordered \ensuremath{\delta} phase. This interpretation of the experimental data is supported by our mod…

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