Optimizing the holographic digital data storage channel
G.W. Burr, Jonathan Ashley, et al.
Conference on Advanced Optical Memories and Interfaces to Computer Storage 1998
Deceleration and cooling of an atomic beam by a counterpropagating beam of white light is studied by numerically integrating the classical equations of motion. It is shown that nonresonant scattering limits the cooling, but this limitation can be overcome by the addition of a monochromatic, copropagating light beam. Such a scheme can continuously cool about 70% of a thermal atomic beam to a temperature of the order of 50 mK. © 1988, Optical Society of America.
G.W. Burr, Jonathan Ashley, et al.
Conference on Advanced Optical Memories and Interfaces to Computer Storage 1998
R.G. DeVoe, J. Hoffnagle, et al.
Physical Review A
F.A. Houle, W.D. Hinsberg, et al.
Journal of Vacuum Science and Technology B: Microelectronics and Nanometer Structures
Jonathan Ashley, M.-P. Bernal, et al.
CLEO 1996