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Voltage-controlled formation of short pitch chiral liquid crystal structures based on high-resolution surface topography

Inge Nys (UGent) , Jeroen Beeckman (UGent) and Kristiaan Neyts (UGent)
(2019) OPTICS EXPRESS. 27(8). p.11492-11502
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Atomic and Molecular Physics, and Optics

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Citation

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MLA
Nys, Inge, Jeroen Beeckman, and Kristiaan Neyts. “Voltage-controlled Formation of Short Pitch Chiral Liquid Crystal Structures Based on High-resolution Surface Topography.” OPTICS EXPRESS 27.8 (2019): 11492–11502. Print.
APA
Nys, I., Beeckman, J., & Neyts, K. (2019). Voltage-controlled formation of short pitch chiral liquid crystal structures based on high-resolution surface topography. OPTICS EXPRESS, 27(8), 11492–11502.
Chicago author-date
Nys, Inge, Jeroen Beeckman, and Kristiaan Neyts. 2019. “Voltage-controlled Formation of Short Pitch Chiral Liquid Crystal Structures Based on High-resolution Surface Topography.” Optics Express 27 (8): 11492–11502.
Chicago author-date (all authors)
Nys, Inge, Jeroen Beeckman, and Kristiaan Neyts. 2019. “Voltage-controlled Formation of Short Pitch Chiral Liquid Crystal Structures Based on High-resolution Surface Topography.” Optics Express 27 (8): 11492–11502.
Vancouver
1.
Nys I, Beeckman J, Neyts K. Voltage-controlled formation of short pitch chiral liquid crystal structures based on high-resolution surface topography. OPTICS EXPRESS. The Optical Society; 2019;27(8):11492–502.
IEEE
[1]
I. Nys, J. Beeckman, and K. Neyts, “Voltage-controlled formation of short pitch chiral liquid crystal structures based on high-resolution surface topography,” OPTICS EXPRESS, vol. 27, no. 8, pp. 11492–11502, 2019.
@article{8611975,
  author       = {Nys, Inge and Beeckman, Jeroen and Neyts, Kristiaan},
  issn         = {1094-4087},
  journal      = {OPTICS EXPRESS},
  keywords     = {Atomic and Molecular Physics,and Optics},
  language     = {eng},
  number       = {8},
  pages        = {11492--11502},
  publisher    = {The Optical Society},
  title        = {Voltage-controlled formation of short pitch chiral liquid crystal structures based on high-resolution surface topography},
  url          = {http://dx.doi.org/10.1364/oe.27.011492},
  volume       = {27},
  year         = {2019},
}

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