Abstract

Wavelength conversion based on four-wave mixing (FWM) has been demonstrated using a 40-m dispersion flattened highly nonlinear photonic crystal fiber (HNL-PCF). A conversion efficiency of -26 dB for a pump power of 19.5 dBm and a conversion bandwidth of 28 nm have been obtained, which are limited by the continuous wave (CW) laser wavelength range and tunability of optical band pass filters (OBPFs).

© 2007 Chinese Optics Letters

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  9. B. Batagelj, in Proceedings of 2nd International Conference on Transparent Optical Networks 179 (2000).
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2005 (1)

R. Hainberger and S. Watanabe, IEEE Photon. Technol. Lett. 17, 70 (2005).

2003 (1)

L. P. Shen, W.-P. Huang, G. X. Chen, and S. S. Jian, IEEE Photon. Technol. Lett. 15, 540 (2003).

2000 (2)

B.-E. Olsson, P. Ohlen, L. Rau, and D. J. Blumenthal, IEEE Photon. Technol. Lett. 12, 846 (2000).

O. Aso, S. Arai, T. Yagi, M. Tadakuma, Y. Suzuki, and S. Namiki, Electron. Lett. 36, 709 (2000).

1997 (1)

1994 (1)

K. Kihuclii and C. Lorattanasane, IEEE Photon. Technol. Lett. 6, 992 (1994).

1992 (1)

K. Inoue and H. Toba, IEEE Photon. Technol. Lett. 4, 69 (1992).

1987 (1)

N. Shibata, R. P. Braun, and R. G. Waarts, IEEE J. Quantum Electron. 23, 1205 (1987).

1978 (1)

K. O. Hill, D. C. Johnson, B. S. Kawasaki, and R. I. MacDonald, J. Appl. Phys. 49, 5098 (1978).

Arai, S.

O. Aso, S. Arai, T. Yagi, M. Tadakuma, Y. Suzuki, and S. Namiki, Electron. Lett. 36, 709 (2000).

Aso, O.

O. Aso, S. Arai, T. Yagi, M. Tadakuma, Y. Suzuki, and S. Namiki, Electron. Lett. 36, 709 (2000).

Birks, T. A.

Blumenthal, D. J.

B.-E. Olsson, P. Ohlen, L. Rau, and D. J. Blumenthal, IEEE Photon. Technol. Lett. 12, 846 (2000).

Braun, R. P.

N. Shibata, R. P. Braun, and R. G. Waarts, IEEE J. Quantum Electron. 23, 1205 (1987).

Chen, G. X.

L. P. Shen, W.-P. Huang, G. X. Chen, and S. S. Jian, IEEE Photon. Technol. Lett. 15, 540 (2003).

Hainberger, R.

R. Hainberger and S. Watanabe, IEEE Photon. Technol. Lett. 17, 70 (2005).

Hill, K. O.

K. O. Hill, D. C. Johnson, B. S. Kawasaki, and R. I. MacDonald, J. Appl. Phys. 49, 5098 (1978).

Huang, W.-P.

L. P. Shen, W.-P. Huang, G. X. Chen, and S. S. Jian, IEEE Photon. Technol. Lett. 15, 540 (2003).

Inoue, K.

K. Inoue and H. Toba, IEEE Photon. Technol. Lett. 4, 69 (1992).

Jian, S. S.

L. P. Shen, W.-P. Huang, G. X. Chen, and S. S. Jian, IEEE Photon. Technol. Lett. 15, 540 (2003).

Johnson, D. C.

K. O. Hill, D. C. Johnson, B. S. Kawasaki, and R. I. MacDonald, J. Appl. Phys. 49, 5098 (1978).

Kawasaki, B. S.

K. O. Hill, D. C. Johnson, B. S. Kawasaki, and R. I. MacDonald, J. Appl. Phys. 49, 5098 (1978).

Kihuclii, K.

K. Kihuclii and C. Lorattanasane, IEEE Photon. Technol. Lett. 6, 992 (1994).

Knight, J. C.

Lorattanasane, C.

K. Kihuclii and C. Lorattanasane, IEEE Photon. Technol. Lett. 6, 992 (1994).

MacDonald, R. I.

K. O. Hill, D. C. Johnson, B. S. Kawasaki, and R. I. MacDonald, J. Appl. Phys. 49, 5098 (1978).

Namiki, S.

O. Aso, S. Arai, T. Yagi, M. Tadakuma, Y. Suzuki, and S. Namiki, Electron. Lett. 36, 709 (2000).

Ohlen, P.

B.-E. Olsson, P. Ohlen, L. Rau, and D. J. Blumenthal, IEEE Photon. Technol. Lett. 12, 846 (2000).

Olsson, B.-E.

B.-E. Olsson, P. Ohlen, L. Rau, and D. J. Blumenthal, IEEE Photon. Technol. Lett. 12, 846 (2000).

Rau, L.

B.-E. Olsson, P. Ohlen, L. Rau, and D. J. Blumenthal, IEEE Photon. Technol. Lett. 12, 846 (2000).

Russell, P. St. J.

Shen, L. P.

L. P. Shen, W.-P. Huang, G. X. Chen, and S. S. Jian, IEEE Photon. Technol. Lett. 15, 540 (2003).

Shibata, N.

N. Shibata, R. P. Braun, and R. G. Waarts, IEEE J. Quantum Electron. 23, 1205 (1987).

Suzuki, Y.

O. Aso, S. Arai, T. Yagi, M. Tadakuma, Y. Suzuki, and S. Namiki, Electron. Lett. 36, 709 (2000).

Tadakuma, M.

O. Aso, S. Arai, T. Yagi, M. Tadakuma, Y. Suzuki, and S. Namiki, Electron. Lett. 36, 709 (2000).

Toba, H.

K. Inoue and H. Toba, IEEE Photon. Technol. Lett. 4, 69 (1992).

Waarts, R. G.

N. Shibata, R. P. Braun, and R. G. Waarts, IEEE J. Quantum Electron. 23, 1205 (1987).

Watanabe, S.

R. Hainberger and S. Watanabe, IEEE Photon. Technol. Lett. 17, 70 (2005).

Yagi, T.

O. Aso, S. Arai, T. Yagi, M. Tadakuma, Y. Suzuki, and S. Namiki, Electron. Lett. 36, 709 (2000).

Electron. Lett. (1)

O. Aso, S. Arai, T. Yagi, M. Tadakuma, Y. Suzuki, and S. Namiki, Electron. Lett. 36, 709 (2000).

IEEE J. Quantum Electron. (1)

N. Shibata, R. P. Braun, and R. G. Waarts, IEEE J. Quantum Electron. 23, 1205 (1987).

IEEE Photon. Technol. Lett. (5)

K. Kihuclii and C. Lorattanasane, IEEE Photon. Technol. Lett. 6, 992 (1994).

K. Inoue and H. Toba, IEEE Photon. Technol. Lett. 4, 69 (1992).

R. Hainberger and S. Watanabe, IEEE Photon. Technol. Lett. 17, 70 (2005).

L. P. Shen, W.-P. Huang, G. X. Chen, and S. S. Jian, IEEE Photon. Technol. Lett. 15, 540 (2003).

B.-E. Olsson, P. Ohlen, L. Rau, and D. J. Blumenthal, IEEE Photon. Technol. Lett. 12, 846 (2000).

J. Appl. Phys. (1)

K. O. Hill, D. C. Johnson, B. S. Kawasaki, and R. I. MacDonald, J. Appl. Phys. 49, 5098 (1978).

Opt. Lett. (1)

Other (1)

B. Batagelj, in Proceedings of 2nd International Conference on Transparent Optical Networks 179 (2000).

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