4.6 Article

Unidirectional amplification and shaping of optical pulses by three-wave mixing with negative phonons

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SPRINGER HEIDELBERG
DOI: 10.1007/s00339-013-8078-4

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  1. US Air Force Office of Scientific Research [FA950-12-1-298]
  2. US National Science Foundation [ECCS-1028353]
  3. Presidium of the Russian Academy of Sciences [24-31]
  4. Russian Federal Program on Science, Education and Innovation [14.A18.21.1942]
  5. Div Of Electrical, Commun & Cyber Sys
  6. Directorate For Engineering [1346547] Funding Source: National Science Foundation

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A possibility to greatly enhance frequency-conversion efficiency of stimulated Raman scattering is shown by making use of extraordinary properties of three-wave mixing of ordinary and backward waves. Such processes are commonly attributed to negative-index plasmonic metamaterials. This work demonstrates the possibility to replace such metamaterials that are very challenging to engineer by readily available crystals which support elastic waves with contra-directed phase and group velocities. The main goal of this work was to investigate specific properties of indicated nonlinear optical process in short-pulse regime and to show that it enables elimination of fundamental detrimental effect of fast damping of optical phonons on the process concerned. Among the applications is the possibility of creation of a family of unique photonic devices such as unidirectional Raman amplifiers and femtosecond pulse shapers with greatly improved operational properties.

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