Articles

The Effects of Developer Dynamics on Fitness in...

Citation Lim, S. L., Bentley, P. J., & Ishikawa, F. (2015). The Effects of Developer Dynamics on Fitness in an Evolutionary Ecosystem Model of the App Store. IEEE Transactions on...

The Effects of Developer Dynamics on Fitness in...

Citation Lim, S. L., Bentley, P. J., & Ishikawa, F. (2015). The Effects of Developer Dynamics on Fitness in an Evolutionary Ecosystem Model of the App Store. IEEE Transactions on...

Connection Loss Reduction in Variable Optical D...

Citation Higuchi, K.; Yokota, H.; Yoneya, K.; Imai, Y. (2018). Connection Loss Reduction in Variable Optical Delay Line by Using Graded-Index Type Photonic Crystal Fiber. IEEJ Transactions on Electrical and...

Connection Loss Reduction in Variable Optical D...

Citation Higuchi, K.; Yokota, H.; Yoneya, K.; Imai, Y. (2018). Connection Loss Reduction in Variable Optical Delay Line by Using Graded-Index Type Photonic Crystal Fiber. IEEJ Transactions on Electrical and...

Post-Treatment Techniques for Enhancing Mode-Co...

Citation XU, Xizhen; TANG, Jian; ZHAO, Jing; YANG, Kaiming; FU, Cailing; WANG, Qiao; LIU, Shen; LIAO, Changrui; LIAN, Jiarong; and WANG, Yiping. (2015). Post-Treatment Techniques for Enhancing Mode-Coupling in Long...

Post-Treatment Techniques for Enhancing Mode-Co...

Citation XU, Xizhen; TANG, Jian; ZHAO, Jing; YANG, Kaiming; FU, Cailing; WANG, Qiao; LIU, Shen; LIAO, Changrui; LIAN, Jiarong; and WANG, Yiping. (2015). Post-Treatment Techniques for Enhancing Mode-Coupling in Long...

Microstructured optical fiber devices

Citation Eggleton, B. J., Kerbage, C., Westbrook, P. S., Windeler, R. S., & Hale, A. (2001). Microstructured optical fiber devices. Optics Express, 9(13), 698-713. https://doi.org/10.1364/OE.9.000698. Keywords Microstructured optical fibers (MOFs)...

Microstructured optical fiber devices

Citation Eggleton, B. J., Kerbage, C., Westbrook, P. S., Windeler, R. S., & Hale, A. (2001). Microstructured optical fiber devices. Optics Express, 9(13), 698-713. https://doi.org/10.1364/OE.9.000698. Keywords Microstructured optical fibers (MOFs)...

Multivariable Analysis of Nonlinear Optical Loo...

Citation Filoteo-Razo, J.D.; Hernandez-Garcia, J.C.; Estudillo-Ayala, J.M.; Pottiez, O.; Martinez-Angulo, J.R.; Barron-Zambrano, J.H.; Elizondo-Leal, J.C.; Saldivar-Alonso, V.P.; Lauterio-Cruz, J.P.; Rojas-Laguna, R. (2023). Multivariable Analysis of Nonlinear Optical Loop Mirror Operating...

Multivariable Analysis of Nonlinear Optical Loo...

Citation Filoteo-Razo, J.D.; Hernandez-Garcia, J.C.; Estudillo-Ayala, J.M.; Pottiez, O.; Martinez-Angulo, J.R.; Barron-Zambrano, J.H.; Elizondo-Leal, J.C.; Saldivar-Alonso, V.P.; Lauterio-Cruz, J.P.; Rojas-Laguna, R. (2023). Multivariable Analysis of Nonlinear Optical Loop Mirror Operating...

Optically controllable variable fiber optical a...

Citation Martincek, I., & Pudis, D. (2014). Optically controllable variable fiber optical attenuator integrated in conventional optical fiber. Optik, 125(20), 7085–7088. http://dx.doi.org/10.1016/j.ijleo.2014.08.097 Keywords Optically controllable Thermo-optical effect Liquid cladding Optical...

Optically controllable variable fiber optical a...

Citation Martincek, I., & Pudis, D. (2014). Optically controllable variable fiber optical attenuator integrated in conventional optical fiber. Optik, 125(20), 7085–7088. http://dx.doi.org/10.1016/j.ijleo.2014.08.097 Keywords Optically controllable Thermo-optical effect Liquid cladding Optical...