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| Content Provider | IET Digital Library |
|---|---|
| Author | Sharma, Ankita Kumar, Mukesh |
| Abstract | Flat band slow light is achieved in a silicon photonic crystal waveguide with large normalised delay bandwidth product (NDBP) while maintaining smaller values of group velocity dispersion. By altering the waveguide width through shifting the position of two rows of air holes adjacent to the waveguide, it is possible to achieve a high NDBP value. The NDBP values of 0.40, 0.41 and 0.43 over bandwidths of 11, 14 and 18 nm are, respectively, reported. Towards the applicability of the proposed slow light waveguide for buffering applications on silicon, buffering capacity as high as 140 bits can be achieved with the proposed design approach.z |
| Starting Page | 24 |
| Ending Page | 28 |
| Page Count | 5 |
| ISSN | 17518768 |
| Volume Number | 9 |
| e-ISSN | 17518776 |
| Issue Number | Issue 1, Feb (2015) |
| Alternate Webpage(s) | https://digital-library.theiet.org/content/journals/iet-opt/9/1 |
| Alternate Webpage(s) | https://digital-library.theiet.org/content/journals/10.1049/iet-opt.2014.0090 |
| Journal | IET Optoelectronics |
| Publisher Date | 2014-11-04 |
| Access Restriction | Open |
| Rights Holder | © The Institution of Engineering and Technology |
| Subject Keyword | Air Holes Buffering Application Buffering Capacity Couplers Design Approach Elemental Semiconductor Flat Band Slow Light Group Velocity Dispersion Large Normalised Delay Bandwidth Product Optical Design Technique Optical Dispersion Optical Material Optical System Design Optical Waveguide Optical Waveguide Theory Photonic Bandgap Material Photonic Crystal Silicon Silicon Photonic Crystal Waveguide Slow Light Slow Light Waveguide Waveguide Width |
| Content Type | Text |
| Resource Type | Article |
| Subject | Atomic and Molecular Physics, and Optics Electrical and Electronic Engineering |
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