articleTop 1% cited
Negative dispersion using pairs of prisms
Optics Letters · 1984 · Vol. 9(5) · pp. 150–150
R. L. Fork✉(AT&T (United States))Oscar E. Martínez(AT&T (United States))J. P. Gordon(AT&T (United States))
Abstract
We show that pairs of prisms can have negative group-velocity dispersion in the absence of any negative material dispersion. A prism arrangement is described that limits losses to Brewster-surface reflections, avoids transverse displacement of the temporally dispersed rays, permits continuous adjustment of the dispersion through zero, and yields a transmitted beam collinear with the incident beam.
Laser-Matter Interactions and ApplicationsAdvanced Fiber Laser TechnologiesNonlinear Photonic SystemsOpticsPrismDispersion (optics)Light beamTransverse planeBeam (structure)Displacement (psychology)Materials sciencePhysics
Citations
931
FWCI
16.47
field-weighted impact
References
8
Percentile
100%
vs. same field & year
Citations per year
Cited by
Measuring the frequency of light with mode-locked lasers
Optics Communications · 1999 · 456 citations
60-fsec pulse generation from a self-mode-locked Ti:sapphire laser
Optics Letters · 1991 · 1,498 citations
High power ultrafast lasers
Review of Scientific Instruments · 1998 · 618 citations
Compression of optical pulses to six femtoseconds by using cubic phase compensation
Optics Letters · 1987 · 921 citations
Intense few-cycle laser fields: Frontiers of nonlinear optics
Reviews of Modern Physics · 2000 · 2,945 citations
Laser ablation and micromachining with ultrashort laser pulses
IEEE Journal of Quantum Electronics · 1997 · 951 citations
Chirped multilayer coatings for broadband dispersion control in femtosecond lasers
Optics Letters · 1994 · 615 citations
References
Optical pulse compression with diffraction gratings
IEEE Journal of Quantum Electronics · 1969 · 1,321 citations
Citation Network
How this paper connects to the literature. Drag to explore, click any node to open that paper.
