89 results on '"Mukasa, Kazunori"'
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2. High-Power Issues
3. Over 1-Watt Analog RoF Signal Transmission Using a 1-km Hollow-Core Photonic Bandgap Fiber
4. Comparison of nonlinear properties in silica-core and hollow-core fibers
5. Power Resilient, Air-Gap Multi-Core Fiber with >20 W Fiber Fuse Propagation Threshold per Core
6. High-Power Analog Radio-Over-Fiber Transmission Using a Hollow-Core Photonic Bandgap Fiber
7. Uncoupled 6-core Fibers with a Standard 125-μm Cladding, ITU-T G.652 Optical Properties, and Low XT
8. MCF Manufacturing
9. Uncoupled 6-core Fibers with a Standard 125-m Cladding, ITU-T G.652 Optical Properties, and Low XT
10. Ultra Low Loss and Low Crosstalk MCF with Standard Cladding Diameter
11. Dispersion compensating fiber used as a transmission fiber: inverse/reverse dispersion fiber
12. Ultra-high-density uncoupled multi-core fibers
13. Comparison of Different Deformation Functions Modeling Micro-bending Loss of Optical Fibers on Sandpaper Test
14. Development of novel fibers for telecoms application
15. Low-Loss Large-MFD Fibers with G.657.A2 Compliant Macro Bending Performance
16. Optimizations of thin glass diameter fibers
17. Microbending Loss Properties of Different Fiber Designs
18. Challenge towards Ultimate Large MFD keeping G.657 A2 Macro Bending Loss Performances
19. Uncoupled 4-core Fibre with Ultra-low Loss and Low Inter Core Crosstalk
20. Dispersion compensating fiber used as a transmission fiber: inverse/reverse dispersion fiber
21. Silica glass structure simulations for optical fiber application
22. 1,000-core fibers
23. Dispersion managed optical fiber link for high-speed and long-haul optical transmission
24. 100-core fibers
25. Combined Mechanical-Optical Simulation to Predict Microbending Loss of Single Mode Fibers
26. Transmission of Commercial Low Latency Interfaces Over Hollow-Core Fiber
27. Polarization maintaining single-mode low-loss hollow-core fibres
28. TDM-to-WDM conversion from 130 Gbit/s to 3X43 Gbit/s using XPM in a NOLM switch
29. Development of transmission fibre for long-haul high-capacity transmission
30. Single-mode hollow-core fiber for portable acetylene sub-Doppler frequency reference
31. 305 Tb/s Space Division Multiplexed Transmission Using Homogeneous 19-Core Fiber
32. Two Mode Multi-core Fibers for Mode-Division Multiplexing Transmission Systems
33. 7-core 2-mode fibers with large Aeff to simultaneously realize “3M”
34. 19-core multi core fiber to realize high density space division multiplexing transmission
35. 19-core fiber transmission of 19×100×172-Gb/s SDM-WDM-PDM-QPSK signals at 305Tb/s
36. Weakly Coupled Multi Core Fibers with Optimum Design to Realize Selectively Ecitation of Individual Super-modes
37. Optimizing 2 mode fibers with Aeff of 170µm2 for LP01 mode and studying a possibility of realizing endlessly 2 mode operation using holey fibers
38. Multi Core Fiber with Large Aeff of 140 µm2 and Low Crosstalk
39. Analyzing a New Mechanism of Air Holes to Suppress Micro-bending Loss
40. Multi-core Few-mode optical fibers with large Aeff
41. Investigation on multi-core fibers with large Aeff and low micro bending loss
42. Limitations of Existing Optical Fibers
43. Photonic Crystal Multi-Core Fibers for Future High-Capacity Transmission Systems
44. Multi-Core Fibers for Large Capacity SDM
45. Trench Assisted Multi-Core Fiber with Large Aeff over 100 μm2 and Low Attenuation Loss
46. Demonstrating Novel Functionality of Air-holes to Realize Large-mode-area Optical Fibers
47. Development of novel transmission fibers for telecoms
48. Effective space division multiplexing by Multi-Core Fibers
49. Investigation on Multi-Core Fibers with Large Aeff and Low Micro Bending Loss
50. Comparison of microbending loss characteristics between LMA holey fibers and conventional LMA fibers
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