✍️ 🧑‍🦱 💚 Autor:innen verdienen bei uns doppelt. Dank euch haben sie so schon 418.243 € mehr verdient. → Mehr erfahren 💪 📚 🙏

Efficient frequency doubling of near-infrared diode lasers using quasi phase-matched waveguides

Efficient frequency doubling of near-infrared diode lasers using quasi phase-matched waveguides

von Daniel Jedrzejczyk
Softcover - 9783954049585
27,90 €
  • Versandkostenfrei
Auf meine Merkliste
  • Hinweis: Print on Demand. Lieferbar in 5 Tagen.
  • Lieferzeit nach Versand: ca. 1-2 Tage
  • inkl. MwSt. & Versandkosten (innerhalb Deutschlands)

Autorenfreundlich Bücher kaufen?!

Beschreibung

Single-pass frequency doubling of near-infrared (NIR) diode lasers in nonlinear bulk crystals allows to realize compact lasers in the green spectral region, offering continuous-wave (CW) laser radiation characterized by a high spectral brightness. In order to increase the efficiency of such laser systems, the application of quasi phase-matched waveguide structures instead of bulk crystals is investigated theoretically and experimentally. In particular, a complemented study of second-harmonic generation (SHG) in periodically poled MgO-doped lithium niobate (MgO:LN) ridge and planar waveguides is conducted. This study aims at identifying benefits and limitations for both geometries with respect to maximum conversion efficiency and accessible power.

The application of waveguide structures presented in this thesis results in a distinct improvement of the opto-optical conversion efficiency ¿ from approximately 20¿% in a bulk crystal to almost 30¿% in a planar waveguide, and to around 40¿% in a ridge waveguide. A maximum second-harmonic power of nearly 0.4 W in a ridge waveguide and 1.2 W in planar waveguide is reached. The generated laser radiation in the green spectral range is characterized by a single-frequency spectrum and nearly diffrac-tion-limited beam quality and thus ideally suited for applications in bio-medicine, bio-technology, and spectroscopy.

Details

Verlag Cuvillier
Ersterscheinung 12. Mai 2015
Maße 21 cm x 14.8 cm x 0.8 cm
Gewicht 184 Gramm
Format Softcover
ISBN-13 9783954049585
Seiten 134