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| Autore: |
Boyraz Ozdal
|
| Titolo: |
Silicon Photonics Bloom
|
| Pubblicazione: | Basel, Switzerland, : MDPI - Multidisciplinary Digital Publishing Institute, 2020 |
| Descrizione fisica: | 1 online resource (184 p.) |
| Soggetto topico: | History of engineering and technology |
| Soggetto non controllato: | amorphous silicon oxycarbide |
| Bragg gratings | |
| carrier plasma | |
| chemical vapor deposition | |
| defect | |
| dispersion control | |
| electrostatic actuator | |
| frequency combs | |
| germanium | |
| heterogeneous integration | |
| integrated optics | |
| integrated photonics | |
| integrated polarimeter | |
| integrated silicon photonic circuits | |
| light emitting diode | |
| Mach-Zehnder interferometers | |
| micro-platform | |
| microelectromechanical systems (MEMS) | |
| mode-locked lasers | |
| modulator | |
| multimode interferometer | |
| n/a | |
| nanophononics | |
| nitrogen doping | |
| nonlinear optics | |
| off-chip coupling | |
| optical interconnects | |
| optical switch | |
| optical waveguide | |
| optoelectronics | |
| parallel plate actuation | |
| phase change material | |
| photoconductivity | |
| photoluminescence | |
| photonic processors | |
| photonics integrated circuit | |
| physical vapor deposition | |
| plasma enhanced chemical vapor deposition | |
| polarisation controller | |
| polarisation multiplexing | |
| polarisation shift keying | |
| quantum dot | |
| second-harmonic generation | |
| silicon nanocrystals | |
| silicon nitride photonics | |
| silicon optical modulator | |
| silicon oxynitride | |
| silicon photonics | |
| Silicon Photonics | |
| silicon-on-insulator (SOI) | |
| supercontinuum | |
| terahertz | |
| thin film | |
| unitary transformation | |
| vertical grating coupler | |
| WDM transmitter | |
| Persona (resp. second.): | ZhaoQiancheng |
| BoyrazOzdal | |
| Sommario/riassunto: | The open access journal Micromachines invites manuscript submissions for the Special Issue "Silicon Photonics Bloom". The past two decades have witnessed a tremendous growth of silicon photonics. Lab-scale research on simple passive component designs is now being expanded by on-chip hybrid systems architectures. With the recent injection of government and private funding, we are living the 1980s of the electronic industry, when the first merchant foundries were established. Soon, we will see more and more merchant foundries proposing well-established electronic design tools, product development kits, and mature component libraries. The open access journal Micromachines invites the submission of manuscripts in the developing area of silicon photonics. The goal of this Special Issue is to highlight the recent developments in this cutting-edge technology.] |
| Titolo autorizzato: | Silicon Photonics Bloom ![]() |
| Formato: | Materiale a stampa |
| Livello bibliografico | Monografia |
| Lingua di pubblicazione: | Inglese |
| Record Nr.: | 9910557287403321 |
| Lo trovi qui: | Univ. Federico II |
| Opac: | Controlla la disponibilità qui |