Abstract

High-quality neodymium doped GGG laser crystals have been grown by Czochralski (Cz) method. Results of Nd:GGG thin chip laser operating at 1.064 ?m pumped by Ti:sapphire laser operating at 808 nm were reported. The slop efficiency was as high as 20%.

© 2005 Chinese Optics Letters

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  1. J. Vetrovec, Proc. SPIE 5120, 517 (2003).
  2. J. Vetrovec, Proc. SPIE 4630, 1 (2003).
  3. J. Vetrovec, Proc. SPIE 4968, 87 (2003).
  4. W. Koechner, Solid-State Laser Engineering (in Chinese) W. Sun, Z. W. Jiang, and G. X. Cheng (trans.) (Science in China Press, Beijing, 2002).
  5. G. J. Zhao, T. Li, and J. Xu, J. Crystal Growth 237-239, 720 (2002).
  6. B. Keszei, J. Paitz, J. Vandlik, and A. Suveges, J. Crystal Growth 226, 95 (2001).
  7. H. Hayakawa, K. Maeda, T. Ishikawa, T. Yokoyama, and Y. Fujii, Jpn. J. Appl. Phys. 26, L623 (1987).

2003 (3)

J. Vetrovec, Proc. SPIE 5120, 517 (2003).

J. Vetrovec, Proc. SPIE 4630, 1 (2003).

J. Vetrovec, Proc. SPIE 4968, 87 (2003).

2001 (1)

B. Keszei, J. Paitz, J. Vandlik, and A. Suveges, J. Crystal Growth 226, 95 (2001).

Keszei, B.

B. Keszei, J. Paitz, J. Vandlik, and A. Suveges, J. Crystal Growth 226, 95 (2001).

Paitz, J.

B. Keszei, J. Paitz, J. Vandlik, and A. Suveges, J. Crystal Growth 226, 95 (2001).

Suveges, A.

B. Keszei, J. Paitz, J. Vandlik, and A. Suveges, J. Crystal Growth 226, 95 (2001).

Vandlik, J.

B. Keszei, J. Paitz, J. Vandlik, and A. Suveges, J. Crystal Growth 226, 95 (2001).

Vetrovec, J.

J. Vetrovec, Proc. SPIE 5120, 517 (2003).

J. Vetrovec, Proc. SPIE 4630, 1 (2003).

J. Vetrovec, Proc. SPIE 4968, 87 (2003).

J. Crystal Growth (1)

B. Keszei, J. Paitz, J. Vandlik, and A. Suveges, J. Crystal Growth 226, 95 (2001).

Proc. SPIE (3)

J. Vetrovec, Proc. SPIE 5120, 517 (2003).

J. Vetrovec, Proc. SPIE 4630, 1 (2003).

J. Vetrovec, Proc. SPIE 4968, 87 (2003).

Other (3)

W. Koechner, Solid-State Laser Engineering (in Chinese) W. Sun, Z. W. Jiang, and G. X. Cheng (trans.) (Science in China Press, Beijing, 2002).

G. J. Zhao, T. Li, and J. Xu, J. Crystal Growth 237-239, 720 (2002).

H. Hayakawa, K. Maeda, T. Ishikawa, T. Yokoyama, and Y. Fujii, Jpn. J. Appl. Phys. 26, L623 (1987).

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