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Programmable shaping of femtosecond optical pulses by use of 128-element liquid crystal phase modulator

IEEE Journal of Quantum Electronics · 1992 · Vol. 28(4) · pp. 908–920

Abstract

Programmable shaping of femtosecond pulses by using a 128-element liquid crystal modulator to manipulate the phases of optical frequency components which are spatially dispersed within a grating-and-lens pulse shaping apparatus is described. This apparatus makes possible gray-level control of the spectral phases and allows modification of the pulse shape on a millisecond time scale under electronic control. Refinements in the design of the multielement modulator result in pulse shaping fidelity comparable to that which can be achieved with microlithographically fabricated masks. Several examples of pulse shaping operation, including pulse position modulation, programmable pulse compression, and adjustable cubic phase distortion, are described.< <ETX xmlns:mml="http://www.w3.org/1998/Math/MathML" xmlns:xlink="http://www.w3.org/1999/xlink">&gt;</ETX>

graph theory and CDMA systemsLiquid Crystal Research AdvancementsOptical Network TechnologiesFemtosecondPulse shapingFemtosecond pulse shapingSpatial light modulatorOpticsPhase modulationMaterials scienceBandwidth-limited pulseMultiphoton intrapulse interference phase scanMillisecond
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References
Physics of liquid crystals
Reviews of Modern Physics · 1974 · 2,599 citations
Coherent ultrashort light pulse code-division multiple access communication systems
Journal of Lightwave Technology · 1990 · 478 citations
Optical pulse compression with diffraction gratings
IEEE Journal of Quantum Electronics · 1969 · 1,321 citations
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