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All figures (10)
Fig. 9: Manufa
Fig. 7: (a) Reflection spectrum from (001) FCC plane is in agreement with band-gap at X point (b) Reflection response from (001) FCC plane at 45° incidence shows two peaks because bands are inter-crossing at that point.
Fig. 1: Three different relative arrangements of spheres: A, B and C are represented in White, Red and Blue colors respectively to show the stacking of Face Centered Cubic (FCC), Hexagonal Closed Packed (HCP) and Random Face Centered Cubic (RFCC) structures.
Fig. 3: Red plot shows calculated optical power in 90° waveguide. Green plot shows calculated optical power reflected backwards in the incident waveguide from TiO2-SiO2 core-shell photonic crystal structure.
Fig. 2: (a) Modelled natural sedimentation FCC photonic crystal structure embedded in polymer waveguides for 90° bending of light. (b) 90° and back reflected optical powers are plotted in red and green colors respectively.
Fig. 11: Sedim
Fig. 12: First a
Fig. 13: Reflection on different position of the sedimentated sample.
Fig. 5: (a) 90° reflection response from truncated rectangular seed layer structure. (b) Bandstructure of core-shell FCC crystal.
Fig. 6: (a) Calculated reflection spectrum at normal incidence to (111) plane of the FCC crystal. (b) Reflection spectrum from (111) FCC plane plotted against bandstructure showing band-gap in the Γ-L direction.
Proceedings Article
•
DOI
•
Development of photonic crystal structures for on-board optical communication
[...]
Muhammad Umar Khan
1
,
John Justice
1
,
Arjen Boersma
2
,
Maurice C. D. Mourad
2
,
Renz van Ee
2
,
Alfons van Blaaderen
3
,
Judith E. G. J. Wijnhoven
3
,
Brian Corbett
1
- Show less
+4 more
•
Institutions (3)
Tyndall National Institute
1
,
Netherlands Organisation for Applied Scientific Research
2
,
Utrecht University
3
02 May 2014
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Proceedings of SPIE