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+30.8 dBm, IM-DD, 32 Gbit/s High Power Optical Transmission with a 4-km Photonic Bandgap Fiber., , , and . PSC, page 1-3. IEEE, (2023)Polarization maintaining, single mode hollow core fibers., , , , , , , , and . ECOC, page 1-3. IEEE, (2014)Combined Mechanical-Optical Simulation to Predict Microbending Loss of Single Mode Fibers., , , and . OECC/PSC, page 1-3. IEEE, (2019)Uncoupled 6-core Fibers with a Standard 125-μm Cladding, ITU-T G.652 Optical Properties, and Low XT., , , , , , , and . OFC, page 1-3. IEEE, (2023)Single mode, polarization maintaining hollow core fibre with significantly improved higher order mode reduction., , , , , , and . ECOC, page 1-3. IEEE, (2015)Newly structured Hollow-Core Fiber and its open innovation field for Power over fiber, Radio over fiber and ultra-low latency application (Invited talk)., , , , and . ICTON, page 1-9. IEEE, (2024)First demonstration of hollow-core fiber for intra data center low latency connectivity with a commercial 100Gb/s interface., , , , , , , , , and 2 other author(s). OFC, page 1-3. IEEE, (2015)MCF Manufacturing.. OFC, page 1-3. IEEE, (2023)Uncoupled 4-core Fibre with Ultra-low Loss and Low Inter Core Crosstalk., , , , , , , , , and 1 other author(s). ECOC, page 1-4. IEEE, (2020)Comparison of Different Deformation Functions Modeling Micro-bending Loss of Optical Fibers on Sandpaper Test., , and . OFC, page 1-3. IEEE, (2022)