A Fiber-Chip-Fiber Opto-Mechanical Framework of all-Optical Switch with Ultra High Annihilation Proportion

Abstract

We propose and tentatively show an all-optical switch given a fibre-chip-fibre optomechanical framework driven by warm radiation. The two optical filaments are both composed of versatile cantilever structures with a freehanging length. With infusing pump lights into the optomechanical frame, the created warm radiation between the grating couplers and the optical strands could viably move the filaments with relocations up to many micrometres. Along these lines, the visual threads would entirely veer off from the comparing grating coupler to remove the optical signal transmission. In the test, utilising light to control light, both ultra high annihilation proportions past 60 dB and an operation data transfer capacity of no less than 45 nm have been accomplished by exploiting the useful warm radiation. The critical warm radiation opens up another open door and answers for an all-optical switch. Later on, the noteworthy impact is promising to be utilised as a part of wholly incorporated chips to diminish the necessary pump control significantly. Besides, the proposed gadget has numerous different applications taking all things together optical frameworks, for example, reconfigurable logic gates.

Authors and Affiliations

N. JAYA KUMAR

Keywords

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  • EP ID EP280257
  • DOI 10.24247/ijmperdfeb201887
  • Views 84
  • Downloads 0

How To Cite

N. JAYA KUMAR (2018). A Fiber-Chip-Fiber Opto-Mechanical Framework of all-Optical Switch with Ultra High Annihilation Proportion. International Journal of Mechanical and Production Engineering Research and Development (IJMPERD ), 8(1), 781-784. https://europub.co.uk/articles/-A-280257