Fundamentals of direct multi-wavelength diode pumping of Ti:Sapphire lasers for enhanced optical-to-optical conversion efficiency across a broad spectral range

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Аннотация

Direct-diode-pumped titanium–sapphire lasers are gaining popularity as sources of coherent light due to their wide emission bandwidth, cost-effectiveness, ergonomics and compactness. Despite recent advances in this field, reported laser output powers remain relatively low. Here, we present a theoretically and experimentally described pumping technique that involves the spectral and collinear combination of blue and green laser diode radiation. We show that this approach yields an impressive average optical-to-optical efficiency of 16.6 % in continuous-wave laser mode and up to 43.6 % in femtosecond mode based on Kerr-lens mode-locking. Consequently, with a maximum pump power of 15 W, the generated output power at 770 nm reaches 2.5 W in continuous-wave mode. With a pump of 14.5 W we have 1.84 W in femtosecond mode. In the future, such titanium–sapphire lasers promise to become even more accessible and user-friendly.

Об авторах

K. E Reznikov

Автор, ответственный за переписку.
Email: k.reznikov@avesta.ru

A. O Mavritskiy

Email: k.reznikov@avesta.ru

M. N Esaulkov

Email: k.reznikov@avesta.ru

A. V Naumov

Email: k.reznikov@avesta.ru

A. V Konyashchenko

Email: k.reznikov@avesta.ru

Список литературы

  1. N. L. Istomina and L. V. Karyakina, Photonics Russia 14, 300 (2020).
  2. P. W. Roth, A. J. Maclean, D. Burns, and A. J. Kemp, Opt. Lett. 34, 3334 (2009).
  3. S. Sawai, A. Hosaka, H. Kawauchi, K. Hirosawa, and F. Kannari, Appl. Phys. Express 7, 022702 (2014).
  4. S. Backus, M. Kirchner, R. Lemons, D. Schmidt, C. Durfee, M. Murnane, and H. Kapteyn, Opt. Express 25, 3666 (2017).
  5. D. H. Song and H. S. Seo, Opt. Express 29, 32649 (2021).
  6. W. P. Risk, J. Opt. Soc. Am. B 5, 1412 (1988).

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