Abstract

Precise control of the bandwidth of quasi-phase-matched second-harmonic generation in silica fibers is realized through chirped-period poling. The bandwidth is expanded by a factor of 33 over a uniform-period poled fiber of the same interaction length.

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    [CrossRef] [PubMed]
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    [CrossRef] [PubMed]
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    [CrossRef]
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    [CrossRef] [PubMed]
  5. C. Corbari, A. Canagasabey, M. Ibsen, F. Mezzapesa, C. Codemard, J. Nilsson, and P. G. Kazansky, Optical Fiber Communications Conference (Optical Society of America, 2005).
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    [CrossRef]
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    [CrossRef]
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    [CrossRef]
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    [CrossRef]
  11. M. A. Arbore, A. Galvanauskas, D. Harter, M. H. Chou, and M. M. Fejer, Opt. Lett. 22, 1341 (1997).
    [CrossRef]

2009

1999

1997

1994

P. G. Kazansky, L. Dong, and P. S. J. Russell, Opt. Lett. 19, 701 (1994).
[CrossRef] [PubMed]

K. Mizuuchi, K. Yamamoto, M. Kato, and H. Sato, IEEE J. Quantum Electron. 30, 1596 (1994).
[CrossRef]

1993

K. C. Byron, K. Sugden, T. Bricheno, and I. Bennion, Electron. Lett. 29, 1659 (1993).
[CrossRef]

1991

R. A. Myers, N. Mukherjee, and S. R. J. Brueck, Opt. Lett. 16, 1732 (1991).
[CrossRef] [PubMed]

E. M. Dianov, P. G. Kazansky, and D. Y. Stepanov, Sov. Lightwave Commun. 1, 247 (1991).

1990

T. Suhara and H. Nishihara, IEEE J. Quantum Electron. 26, 1265 (1990).
[CrossRef]

E. M. Dianov, P. G. Kazansky, and D. Y. Stepanov, Sov. J. Quantum Electron. 20, 849 (1990).
[CrossRef]

Arbore, M. A.

Bennion, I.

K. C. Byron, K. Sugden, T. Bricheno, and I. Bennion, Electron. Lett. 29, 1659 (1993).
[CrossRef]

Bonfrate, G.

Bricheno, T.

K. C. Byron, K. Sugden, T. Bricheno, and I. Bennion, Electron. Lett. 29, 1659 (1993).
[CrossRef]

Broderick, N. G.

Brueck, S. R. J.

Byron, K. C.

K. C. Byron, K. Sugden, T. Bricheno, and I. Bennion, Electron. Lett. 29, 1659 (1993).
[CrossRef]

Canagasabey, A.

A. Canagasabey, C. Corbari, A. V. Gladyshev, F. Liegeois, S. Guillemet, Y. Hernandez, M. V. Yashkov, A. Kosolapov, E. M. Dianov, M. Ibsen, and P. G. Kazansky, Opt. Lett. 34, 2483 (2009).
[CrossRef] [PubMed]

C. Corbari, A. Canagasabey, M. Ibsen, F. Mezzapesa, C. Codemard, J. Nilsson, and P. G. Kazansky, Optical Fiber Communications Conference (Optical Society of America, 2005).

Chou, M. H.

Codemard, C.

C. Corbari, A. Canagasabey, M. Ibsen, F. Mezzapesa, C. Codemard, J. Nilsson, and P. G. Kazansky, Optical Fiber Communications Conference (Optical Society of America, 2005).

Corbari, C.

A. Canagasabey, C. Corbari, A. V. Gladyshev, F. Liegeois, S. Guillemet, Y. Hernandez, M. V. Yashkov, A. Kosolapov, E. M. Dianov, M. Ibsen, and P. G. Kazansky, Opt. Lett. 34, 2483 (2009).
[CrossRef] [PubMed]

C. Corbari, A. Canagasabey, M. Ibsen, F. Mezzapesa, C. Codemard, J. Nilsson, and P. G. Kazansky, Optical Fiber Communications Conference (Optical Society of America, 2005).

de Sandro, J. P.

Dianov, E. M.

A. Canagasabey, C. Corbari, A. V. Gladyshev, F. Liegeois, S. Guillemet, Y. Hernandez, M. V. Yashkov, A. Kosolapov, E. M. Dianov, M. Ibsen, and P. G. Kazansky, Opt. Lett. 34, 2483 (2009).
[CrossRef] [PubMed]

E. M. Dianov, P. G. Kazansky, and D. Y. Stepanov, Sov. Lightwave Commun. 1, 247 (1991).

E. M. Dianov, P. G. Kazansky, and D. Y. Stepanov, Sov. J. Quantum Electron. 20, 849 (1990).
[CrossRef]

Dong, L.

Fejer, M. M.

Galvanauskas, A.

Gladyshev, A. V.

Guillemet, S.

Harter, D.

Hernandez, Y.

Ibsen, M.

A. Canagasabey, C. Corbari, A. V. Gladyshev, F. Liegeois, S. Guillemet, Y. Hernandez, M. V. Yashkov, A. Kosolapov, E. M. Dianov, M. Ibsen, and P. G. Kazansky, Opt. Lett. 34, 2483 (2009).
[CrossRef] [PubMed]

C. Corbari, A. Canagasabey, M. Ibsen, F. Mezzapesa, C. Codemard, J. Nilsson, and P. G. Kazansky, Optical Fiber Communications Conference (Optical Society of America, 2005).

Kato, M.

K. Mizuuchi, K. Yamamoto, M. Kato, and H. Sato, IEEE J. Quantum Electron. 30, 1596 (1994).
[CrossRef]

Kazansky, P. G.

A. Canagasabey, C. Corbari, A. V. Gladyshev, F. Liegeois, S. Guillemet, Y. Hernandez, M. V. Yashkov, A. Kosolapov, E. M. Dianov, M. Ibsen, and P. G. Kazansky, Opt. Lett. 34, 2483 (2009).
[CrossRef] [PubMed]

V. Pruneri, G. Bonfrate, P. G. Kazansky, D. J. Richardson, N. G. Broderick, J. P. de Sandro, C. Simonneau, P. Vidakovic, and J. A. Levenson, Opt. Lett. 24, 208 (1999).
[CrossRef]

P. G. Kazansky, L. Dong, and P. S. J. Russell, Opt. Lett. 19, 701 (1994).
[CrossRef] [PubMed]

E. M. Dianov, P. G. Kazansky, and D. Y. Stepanov, Sov. Lightwave Commun. 1, 247 (1991).

E. M. Dianov, P. G. Kazansky, and D. Y. Stepanov, Sov. J. Quantum Electron. 20, 849 (1990).
[CrossRef]

C. Corbari, A. Canagasabey, M. Ibsen, F. Mezzapesa, C. Codemard, J. Nilsson, and P. G. Kazansky, Optical Fiber Communications Conference (Optical Society of America, 2005).

Kosolapov, A.

Levenson, J. A.

Liegeois, F.

Mezzapesa, F.

C. Corbari, A. Canagasabey, M. Ibsen, F. Mezzapesa, C. Codemard, J. Nilsson, and P. G. Kazansky, Optical Fiber Communications Conference (Optical Society of America, 2005).

Mizuuchi, K.

K. Mizuuchi, K. Yamamoto, M. Kato, and H. Sato, IEEE J. Quantum Electron. 30, 1596 (1994).
[CrossRef]

Mukherjee, N.

Myers, R. A.

Nilsson, J.

C. Corbari, A. Canagasabey, M. Ibsen, F. Mezzapesa, C. Codemard, J. Nilsson, and P. G. Kazansky, Optical Fiber Communications Conference (Optical Society of America, 2005).

Nishihara, H.

T. Suhara and H. Nishihara, IEEE J. Quantum Electron. 26, 1265 (1990).
[CrossRef]

Pruneri, V.

Richardson, D. J.

Russell, P. S. J.

Sato, H.

K. Mizuuchi, K. Yamamoto, M. Kato, and H. Sato, IEEE J. Quantum Electron. 30, 1596 (1994).
[CrossRef]

Simonneau, C.

Stepanov, D. Y.

E. M. Dianov, P. G. Kazansky, and D. Y. Stepanov, Sov. Lightwave Commun. 1, 247 (1991).

E. M. Dianov, P. G. Kazansky, and D. Y. Stepanov, Sov. J. Quantum Electron. 20, 849 (1990).
[CrossRef]

Sugden, K.

K. C. Byron, K. Sugden, T. Bricheno, and I. Bennion, Electron. Lett. 29, 1659 (1993).
[CrossRef]

Suhara, T.

T. Suhara and H. Nishihara, IEEE J. Quantum Electron. 26, 1265 (1990).
[CrossRef]

Vidakovic, P.

Yamamoto, K.

K. Mizuuchi, K. Yamamoto, M. Kato, and H. Sato, IEEE J. Quantum Electron. 30, 1596 (1994).
[CrossRef]

Yashkov, M. V.

Electron. Lett.

K. C. Byron, K. Sugden, T. Bricheno, and I. Bennion, Electron. Lett. 29, 1659 (1993).
[CrossRef]

IEEE J. Quantum Electron.

K. Mizuuchi, K. Yamamoto, M. Kato, and H. Sato, IEEE J. Quantum Electron. 30, 1596 (1994).
[CrossRef]

T. Suhara and H. Nishihara, IEEE J. Quantum Electron. 26, 1265 (1990).
[CrossRef]

Opt. Lett.

Sov. J. Quantum Electron.

E. M. Dianov, P. G. Kazansky, and D. Y. Stepanov, Sov. J. Quantum Electron. 20, 849 (1990).
[CrossRef]

Sov. Lightwave Commun.

E. M. Dianov, P. G. Kazansky, and D. Y. Stepanov, Sov. Lightwave Commun. 1, 247 (1991).

Other

C. Corbari, A. Canagasabey, M. Ibsen, F. Mezzapesa, C. Codemard, J. Nilsson, and P. G. Kazansky, Optical Fiber Communications Conference (Optical Society of America, 2005).

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Figures (3)

Fig. 1
Fig. 1

SHG tuning curves: solid curve, theoretical predictions based on Eqs. (1); circles, experimental data. (a) Unchirped 10 - cm -long PPSF; inset, semi-log scale of the SHG tuning curve of the unchirped device. (b)–(f) Chirped 10 - cm -long QPM gratings. Total chirp is (b) 0.13, (c) 0.25, (d) 0.60, (e) 1.00, and (f) 1.50 mm .

Fig. 2
Fig. 2

SHG acceptance bandwidth of the chirped devices as a function of the total chirp.

Fig. 3
Fig. 3

Normalized efficiency at the central SHG wavelength of the chirped devices as a function of the total chirp.

Equations (2)

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d A ω d ζ = i κ 0 A ω * A 2 ω exp { i φ ( ζ ) } ,
d A 2 ω d ζ = i κ 0 A ω 2 exp { + i φ ( ζ ) } ,

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