1999
DOI: 10.1002/(sici)1521-396x(199911)176:1<747::aid-pssa747>3.0.co;2-z
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Visible Light Control by GaN Photonic Band Gaps

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Cited by 5 publications
(2 citation statements)
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“…The mid-gap frequency of the PBG of triangular PCs of air hole in GaN (with dielectric constant ε ~ 8) is estimated to be around the normalized frequency (a/λ) of 0.5. 22 A periodicity of less than 240 nm is required to tune the PBG to the emission wavelength λ = 475 nm of the structure. Secondly, the photonic crystal periodicity folds the higher momentum guided modes, which lie below the air light line defined by ω = c |k o | with k o being the in-plane wave vector in air, to the first Brillouin zone.…”
Section: (B) (A) (D) (C)mentioning
confidence: 99%
“…The mid-gap frequency of the PBG of triangular PCs of air hole in GaN (with dielectric constant ε ~ 8) is estimated to be around the normalized frequency (a/λ) of 0.5. 22 A periodicity of less than 240 nm is required to tune the PBG to the emission wavelength λ = 475 nm of the structure. Secondly, the photonic crystal periodicity folds the higher momentum guided modes, which lie below the air light line defined by ω = c |k o | with k o being the in-plane wave vector in air, to the first Brillouin zone.…”
Section: (B) (A) (D) (C)mentioning
confidence: 99%
“…The midgap frequency of the PBG of triangular PCs of air hole in GaN with dielectric constant = 8.9 is estimated to be around the normalized frequency ͑a / ͒ of 0.5. 25 In AlN a periodicity of less than 104 nm is required to tune the PBG to the emission wavelength in deep UV ͑ϳ208 nm͒ region. The smallest normalized frequency of our structure is 0.72 for emission wavelength at 208 nm, which implies that photon modes in our structure lie above the cutoff frequency of guided modes.…”
mentioning
confidence: 99%