D.M. Burland, G.C. Bjorklund, et al.
Pure and Applied Chemistry
This article reviews recent progress in the area of photon-gated persistent spectral hole-burning, in which one photon selects absorbers in an inhomogeneously broadened line and a second “gating’. photon of a different wavelength completes the excitation necessary to produce a spectral hole. This phenomenon provides a crucial threshold in the hole formation process, allowing reading with the first wavelength alone to be nondestructive. Examples of photon-gating in both inorganic and organic materials are summarized, with emphasis on the organic materials. © 1989 The Japan Society of Applied Physics.
D.M. Burland, G.C. Bjorklund, et al.
Pure and Applied Chemistry
W.E. Moerner, F.M. Schellenberg, et al.
Physical Review B
J.D. Swalen, G.C. Bjorklund, et al.
Optical and Optoelectronic Applied Science and Engineering 1990
W.E. Moerner, R.M. Macfarlane, et al.
SPIE Optical Data Storage Topical Meeting 1986