Abstract:
In this letter, highly nonlinear birefringent soft glass photonic crystal fiber is presented and analyzed using the full vectorial finite-difference method. The suggested...Show MoreMetadata
Abstract:
In this letter, highly nonlinear birefringent soft glass photonic crystal fiber is presented and analyzed using the full vectorial finite-difference method. The suggested design has a central hole infiltrated with a nematic liquid crystal (NLC). The reported design offers high birefringence of 0.042 at the operating wavelength 1.55 μm with low losses for the two polarized modes. In addition, high nonlinearities of 425.5 W-1 km-1 and 470.8 W-1 km-1 are achieved for the quasi-transverse electric (TE) and quasi-transverse magnetic (TM) modes, respectively, at the operating wavelength of 1.55 μm.
Published in: IEEE Photonics Technology Letters ( Volume: 23, Issue: 20, October 2011)
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- IEEE Keywords
- Index Terms
- High Nonlinearity ,
- Fiber Nonlinearity ,
- Soft Glass ,
- Liquid Crystal Core ,
- Infiltrating ,
- Nematic Liquid Crystal ,
- High Birefringence ,
- Opposite Sign ,
- Rotation Angle ,
- Range Of Modes ,
- Dominant Component ,
- External Electric Field ,
- Modulation Index ,
- Fiber Cross-section ,
- Refractive Index Of Material ,
- Perfectly Matched Layer ,
- Index Contrast ,
- Air Holes ,
- Hole Radius ,
- Center Radius ,
- Non-linear Decrease
- Author Keywords
Keywords assist with retrieval of results and provide a means to discovering other relevant content. Learn more.
- IEEE Keywords
- Index Terms
- High Nonlinearity ,
- Fiber Nonlinearity ,
- Soft Glass ,
- Liquid Crystal Core ,
- Infiltrating ,
- Nematic Liquid Crystal ,
- High Birefringence ,
- Opposite Sign ,
- Rotation Angle ,
- Range Of Modes ,
- Dominant Component ,
- External Electric Field ,
- Modulation Index ,
- Fiber Cross-section ,
- Refractive Index Of Material ,
- Perfectly Matched Layer ,
- Index Contrast ,
- Air Holes ,
- Hole Radius ,
- Center Radius ,
- Non-linear Decrease
- Author Keywords