E. Babich, J. Paraszczak, et al.
Microelectronic Engineering
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.
E. Babich, J. Paraszczak, et al.
Microelectronic Engineering
Kenneth R. Carter, Robert D. Miller, et al.
Macromolecules
K.N. Tu
Materials Science and Engineering: A
I.K. Pour, D.J. Krajnovich, et al.
SPIE Optical Materials for High Average Power Lasers 1992