J.H. Kaufman, Owen R. Melroy, et al.
Synthetic Metals
The orientational behavior of liquid oxygen is studied by probing its molecular dynamics with a picosecond birefringence technique. Temperature-dependent measurements provide a means to distinguish orientational relaxation processes from intermolecular collisional effects. The results are compared with a hydrodynamic model which reveals the importance of bimolecular forces on the rotational dynamics. © 1987 The American Physical Society.
J.H. Kaufman, Owen R. Melroy, et al.
Synthetic Metals
L.K. Wang, A. Acovic, et al.
MRS Spring Meeting 1993
Heinz Schmid, Hans Biebuyck, et al.
Journal of Vacuum Science and Technology B: Microelectronics and Nanometer Structures
William G. Van der Sluys, Alfred P. Sattelberger, et al.
Polyhedron