Ultra-large bandwidth hollow-core guiding in all-silica Bragg fibers with nano-supports
| dc.creator | Vienne, G. | |
| dc.creator | Xu, Y. | |
| dc.creator | Jakobsen, C. | |
| dc.creator | Deyerl, H. -J. | |
| dc.creator | Jensen, J. B. | |
| dc.creator | Sorensen, T. | |
| dc.creator | Hansen, T. P. | |
| dc.creator | Huang, Y. | |
| dc.creator | Terrel, M. | |
| dc.creator | Lee, R. K. | |
| dc.creator | Mortensen, N. A. | |
| dc.creator | Broeng, J. | |
| dc.creator | Simonsen, H. | |
| dc.creator | Bjarklev, A. | |
| dc.creator | Yariv, A. | |
| dc.date | 2004-07-20 | |
| dc.date.accessioned | 2026-07-07T05:52:19Z | |
| dc.date.available | 2026-07-07T05:52:19Z | |
| dc.description | We demonstrate a new class of hollow-core Bragg fibers that are composed of concentric cylindrical silica rings separated by nanoscale support bridges. We theoretically predict and experimentally observe hollow-core confinement over an octave frequency range. The bandwidth of bandgap guiding in this new class of Bragg fibers exceeds that of other hollow-core fibers reported in the literature. With only three rings of silica cladding layers, these Bragg fibers achieve propagation loss of the order of 1 dB/m. | |
| dc.description | 9 pages including 5 figures | |
| dc.identifier | https://arxiv.org/abs/physics/0407104 | |
| dc.identifier | http://arxiv.org/abs/physics/0407104 | |
| dc.identifier | Opt. Express 12, 3500 (2004). | |
| dc.identifier | doi:10.1364/OPEX.12.003500 | |
| dc.identifier.uri | http://salesiana.dossiersoluciones.com/handle/123456789/86286 | |
| dc.subject | Optics | |
| dc.title | Ultra-large bandwidth hollow-core guiding in all-silica Bragg fibers with nano-supports | |
| dc.type | text |