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VH DEPOLARIZED LIGHT SCATTERING
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a(calc a(fit Ailawadi assume assumption axis baseline drift Brillouin lines calculated cartesian tensor central line Chem components coordinate system correlation functions depolarized depolarized light scattering described dielectric tensor dynamical variables eigenvalue Enright and Stoicheff Eqns etalon Euler angles experimental Fabry-Perot flow orientation fluctuations Fourier transform free spectral range given by equation hydrodynamic instrumental intensity internal rotation Keyes-Kivelson theory laser light scattering spectrum lineshape linewidth liquid Lorentzian low temperatures low-k macroscopic molecular polarizabi1ity molecular reorientation molecule Mori formalism observed obtain orthogonal particle Phys polarized predict pressure primary variable quantities region reorientational frequency rotation matrix rotor salol sample scan Searby set of slow shear viscosity shifted peaks slow variables spheroid symmetric tensor Table tensor density third variable three-variable theory time-reversal symmetry tion transport matrix Triphenyl Phosphite Tsay and Kivelson Tsay-Kivelson two-variable theory unshifted values Vaucamps VH spectra VH theory wavelength width