Measurements of mode field diameter and effective area of photonic crystal fibers by far-field scanning technique

K Miyagi, Y Namihira, SMA Razzak, SF Kaijage… - Optical review, 2010 - Springer
We have demonstrated that the correction factor kn= A eff/(πw 2), where ω= MFD/2 (MFD:
mode field diameter), is above 1.20 for photonic crystal fibers (PCFs) with structural …

Measurements of mode field diameter and effective area of photonic crystal fibers by far-field scanning technique

K Miyagi, Y Namihira, SM Razzak, SF Kaijage… - Optical …, 2010 - ui.adsabs.harvard.edu
We have demonstrated that the correction factor kn= A eff/(πw 2), where ω= MFD/2 (MFD:
mode field diameter), is above 1.20 for photonic crystal fibers (PCFs) with structural …

[PDF][PDF] Measurements of Mode Field Diameter and Effective Area of Photonic Crystal Fibers by Far-Field Scanning Technique

K MIYAGI, Y NAMIHIRA, SMA RAZZAK… - …, 2010 - researchgate.net
We have demonstrated that the correction factor kn ¼ Aeff= ð w2Þ, where w ¼ MFD= 2
(MFD: mode field diameter), is above 1.20 for photonic crystal fibers (PCFs) with structural …

[PDF][PDF] Measurements of Mode Field Diameter and Effective Area of Photonic Crystal Fibers by Far-Field Scanning Technique

K MIYAGIÃ, Y NAMIHIRA, SMA RAZZAK, SF KAIJAGE… - …, 2010 - academia.edu
We have demonstrated that the correction factor kn ¼ Aeff= ð w2Þ, where w ¼ MFD= 2
(MFD: mode field diameter), is above 1.20 for photonic crystal fibers (PCFs) with structural …

[引用][C] Measurements of Mode Field Diameter and Effective Area of Photonic Crystal Fibers by Far-Field Scanning Technique

M Kazuya, N Yoshinori, RSM Abdur - Optical review, 2010 - cir.nii.ac.jp
Measurements of Mode Field Diameter and Effective Area of Photonic Crystal Fibers by Far-Field
Scanning Technique | CiNii Research CiNii 国立情報学研究所 学術情報ナビゲータ[サイニィ] …

Measurements of mode field diameter and effective area for photonic crystal fibers by far field scanning technique

K Miyagi, Y Namihira - TENCON 2010-2010 IEEE Region 10 …, 2010 - ieeexplore.ieee.org
We have demonstrated that the correction factor kn= A eff/(πw 2), is above 1.20 for photonic
crystal fibers (PCFs) with structural parameters in the range of d/Λ≅ 0.40-0.90. By using the …

Measurements of mode field diameter and effective area of photonic crystal fibers by far-field scanning technique

K Miyagi, Y Namihira, SMA Razzak, SF Kaijage… - Optical Review, 2010 - infona.pl
We have demonstrated that the correction factor kn= A eff/(πw 2), where ω= MFD/2 (MFD:
mode field diameter), is above 1.20 for photonic crystal fibers (PCFs) with structural …

[PDF][PDF] Measurements of Mode Field Diameter and Effective Area of Photonic Crystal Fibers by Far-Field Scanning Technique

K MIYAGI, Y NAMIHIRA, SMA RAZZAK, SF KAIJAGE… - …, 2010 - annex.jsap.or.jp
We have demonstrated that the correction factor kn ¼ Aeff= ð w2Þ, where w ¼ MFD= 2
(MFD: mode field diameter), is above 1.20 for photonic crystal fibers (PCFs) with structural …

Measurements of Mode Field Diameter and Effective Area of Photonic Crystal Fibers by Far-Field Scanning Technique

K MIYAGI, Y NAMIHIRA, SMA RAZZAK… - OPTICAL …, 2010 - annex.jsap.or.jp
We have demonstrated that the correction factor kn= A eff/(π w 2), where w= MFD/2 (MFD:
mode field diameter), is above 1.20 for photonic crystal fibers (PCFs) with structural …

[引用][C] Measurements of mode field diameter and effective area of photonic crystal fibers by far-field scanning technique

K Miyagi, Y Namihira, SM Razzak, SF Kaijage… - Optical review, 2010 - Springer