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Eric Numkam Fokoua

Showing results (11-20 of 21) with videos related to

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Optics Letters|May 2, 2013
Real-time prediction of structural and optical properties of hollow-core photonic bandgap fibers during fabricationEric Numkam Fokoua, Marco N Petrovich, Naveen K Baddela, et al.
Light, Science & Applications|July 7, 2022
Low-loss microwave photonics links using hollow core fibresXi Zhang, Zitong Feng, David Marpaung, et al.
Optics Express|October 19, 2022
Low loss and broadband low back-reflection interconnection between a hollow-core and standard single-mode fiberDmytro Suslov, Eric Numkam Fokoua, Daniel Dousek, et al.
Optics Letters|October 15, 2021
Thinly coated hollow core fiber for improved thermal phase-stability performanceBo Shi, Hesham Sakr, John Hayes, et al.
Optics Letters|November 3, 2016
Nondestructive measurement of the roughness of the inner surface of hollow core-photonic bandgap fibersXavier Buet, Coralie Brun, Jérôme Gâteau, et al.
Nature Communications|November 28, 2020
Hollow core optical fibres with comparable attenuation to silica fibres between 600 and 1100 nmHesham Sakr, Yong Chen, Gregory T Jasion, et al.
Optics Letters|February 25, 2014
Low-loss and low-bend-sensitivity mid-infrared guidance in a hollow-core-photonic-bandgap fiberNatalie V Wheeler, Alexander M Heidt, Naveen K Baddela, et al.
Optics Express|September 15, 2015
Accurate modelling of fabricated hollow-core photonic bandgap fibersEric Numkam Fokoua, Seyed Reza Sandoghchi, Yong Chen, et al.
Nature Photonics|November 7, 2025
Broadband optical fibre with an attenuation lower than 0.1 decibel per kilometreMarco Petrovich, Eric Numkam Fokoua, Yong Chen, et al.
Optics Express|May 3, 2018
Nonlinear dynamic of picosecond pulse propagation in atmospheric air-filled hollow core fibersSeyedmohammad Abokhamis Mousavi, Hans Christian Hansen Mulvad, Natalie V Wheeler, et al.
Pageof 3

Showing results (11-20 of 21) with videos related to

Sort By:
Pageof 3
Optics Letters|May 2, 2013
Real-time prediction of structural and optical properties of hollow-core photonic bandgap fibers during fabricationEric Numkam Fokoua, Marco N Petrovich, Naveen K Baddela, et al.
Light, Science & Applications|July 7, 2022
Low-loss microwave photonics links using hollow core fibresXi Zhang, Zitong Feng, David Marpaung, et al.
Optics Express|October 19, 2022
Low loss and broadband low back-reflection interconnection between a hollow-core and standard single-mode fiberDmytro Suslov, Eric Numkam Fokoua, Daniel Dousek, et al.
Optics Letters|October 15, 2021
Thinly coated hollow core fiber for improved thermal phase-stability performanceBo Shi, Hesham Sakr, John Hayes, et al.
Optics Letters|November 3, 2016
Nondestructive measurement of the roughness of the inner surface of hollow core-photonic bandgap fibersXavier Buet, Coralie Brun, Jérôme Gâteau, et al.
Nature Communications|November 28, 2020
Hollow core optical fibres with comparable attenuation to silica fibres between 600 and 1100 nmHesham Sakr, Yong Chen, Gregory T Jasion, et al.
Optics Letters|February 25, 2014
Low-loss and low-bend-sensitivity mid-infrared guidance in a hollow-core-photonic-bandgap fiberNatalie V Wheeler, Alexander M Heidt, Naveen K Baddela, et al.
Optics Express|September 15, 2015
Accurate modelling of fabricated hollow-core photonic bandgap fibersEric Numkam Fokoua, Seyed Reza Sandoghchi, Yong Chen, et al.
Nature Photonics|November 7, 2025
Broadband optical fibre with an attenuation lower than 0.1 decibel per kilometreMarco Petrovich, Eric Numkam Fokoua, Yong Chen, et al.
Optics Express|May 3, 2018
Nonlinear dynamic of picosecond pulse propagation in atmospheric air-filled hollow core fibersSeyedmohammad Abokhamis Mousavi, Hans Christian Hansen Mulvad, Natalie V Wheeler, et al.
Pageof 3