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Liquid crystals in waveguides for tuning and sensing

Kristiaan Neyts (UGent) , Wout De Cort (UGent) , Hamidreza Azarinia (UGent) , Pieter Vanbrabant (UGent) , Richard James (UGent) and Jeroen Beeckman (UGent)
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Abstract
The orientation of liquid crystal in the neighborhood of an optical waveguide determines the propagation speed and the losses in the waveguide. This principle can be used for tuning the resonance frequency of a ring resonator or for sensing the presence of molecules at the interface between water and liquid crystal. In this work, experimental evidence and qualitative explanations are provided for these two cases

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Please use this url to cite or link to this publication:

MLA
Neyts, Kristiaan, et al. “Liquid Crystals in Waveguides for Tuning and Sensing.” PHOTONICS LETTERS OF POLAND, vol. 3, no. 1, 2011, pp. 17–19, doi:10.4302/plp.2011.1.07.
APA
Neyts, K., De Cort, W., Azarinia, H., Vanbrabant, P., James, R., & Beeckman, J. (2011). Liquid crystals in waveguides for tuning and sensing. PHOTONICS LETTERS OF POLAND, 3(1), 17–19. https://doi.org/10.4302/plp.2011.1.07
Chicago author-date
Neyts, Kristiaan, Wout De Cort, Hamidreza Azarinia, Pieter Vanbrabant, Richard James, and Jeroen Beeckman. 2011. “Liquid Crystals in Waveguides for Tuning and Sensing.” PHOTONICS LETTERS OF POLAND 3 (1): 17–19. https://doi.org/10.4302/plp.2011.1.07.
Chicago author-date (all authors)
Neyts, Kristiaan, Wout De Cort, Hamidreza Azarinia, Pieter Vanbrabant, Richard James, and Jeroen Beeckman. 2011. “Liquid Crystals in Waveguides for Tuning and Sensing.” PHOTONICS LETTERS OF POLAND 3 (1): 17–19. doi:10.4302/plp.2011.1.07.
Vancouver
1.
Neyts K, De Cort W, Azarinia H, Vanbrabant P, James R, Beeckman J. Liquid crystals in waveguides for tuning and sensing. PHOTONICS LETTERS OF POLAND. 2011;3(1):17–9.
IEEE
[1]
K. Neyts, W. De Cort, H. Azarinia, P. Vanbrabant, R. James, and J. Beeckman, “Liquid crystals in waveguides for tuning and sensing,” PHOTONICS LETTERS OF POLAND, vol. 3, no. 1, pp. 17–19, 2011.
@article{1224681,
  abstract     = {The orientation of liquid crystal in the neighborhood of an optical waveguide determines the propagation speed and the losses in the waveguide. This principle can be used for tuning the resonance frequency of a ring resonator or for sensing the presence of molecules at the interface between water and liquid crystal. In this work, experimental evidence and qualitative explanations are provided for these two cases},
  author       = {Neyts, Kristiaan and De Cort, Wout and Azarinia, Hamidreza and Vanbrabant, Pieter and James, Richard and Beeckman, Jeroen},
  issn         = {2080-2242},
  journal      = {PHOTONICS LETTERS OF POLAND},
  language     = {eng},
  number       = {1},
  pages        = {17--19},
  title        = {Liquid crystals in waveguides for tuning and sensing},
  url          = {http://dx.doi.org/10.4302/plp.2011.1.07},
  volume       = {3},
  year         = {2011},
}

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