Abstract

Propagation of light at 1.5 µm with peak intensity in an air hole is achieved within an air–silica-structured Fresnel waveguide. Thus a simpler fiber design alternative to photonic crystal fibers is possible for high-peak-power propagation with reduced nonlinear interactions. Multiple foci are observed in the far field.

© 2003 Optical Society of America

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References

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  1. S. V. Khukhlevsky, Europhys. Lett. 54, 461 (2001).
    [CrossRef]
  2. S. V. Khukhlevsky, G. Nyitray, and V. L. Kantsyrev, Phys. Rev. E 64, 026603 (2001).
    [CrossRef]
  3. J. Canning, Opt. Commun. 207, 35 (2002).
    [CrossRef]
  4. W. Lauterborn, T. Kurtz, and M. Wiesenfeldt, Coherent Optics (Springer-Verlag, Berlin, 1999).
  5. J. Canning, E. Buckley, K. Lyytikainen, and T. Ryan, Opt. Commun. 205, 95 (2002).
    [CrossRef]
  6. J. L. Soret and J. C. Poggendorff, Ann. Phys. Chem. (Leipzig) 156, 99 (1875); reprinted in J. Ojeda-Castaneda and C. Gomez-Reino, eds., Selected Papers on Zone Plates (SPIE Optical Engineering Press, Bellingham, Wash., 1996), pp. 11–25.
    [CrossRef]
  7. J. Canning, K. Sommer, S. Huntington, and A. L. G. Carter, Opt. Commun. 199, 375 (2001).
    [CrossRef]
  8. Y. J. Guo and S. K. Barton, IEEE Microwave Guided Wave Lett. 3, 417 (1993).
    [CrossRef]
  9. J. Broeng, D. Mogilevstev, S. E. Barkou, and A. Bjarklev, Opt. Fiber Technol. 5, 305 (1999).
    [CrossRef]

2002 (2)

J. Canning, Opt. Commun. 207, 35 (2002).
[CrossRef]

J. Canning, E. Buckley, K. Lyytikainen, and T. Ryan, Opt. Commun. 205, 95 (2002).
[CrossRef]

2001 (3)

S. V. Khukhlevsky, Europhys. Lett. 54, 461 (2001).
[CrossRef]

S. V. Khukhlevsky, G. Nyitray, and V. L. Kantsyrev, Phys. Rev. E 64, 026603 (2001).
[CrossRef]

J. Canning, K. Sommer, S. Huntington, and A. L. G. Carter, Opt. Commun. 199, 375 (2001).
[CrossRef]

1999 (1)

J. Broeng, D. Mogilevstev, S. E. Barkou, and A. Bjarklev, Opt. Fiber Technol. 5, 305 (1999).
[CrossRef]

1993 (1)

Y. J. Guo and S. K. Barton, IEEE Microwave Guided Wave Lett. 3, 417 (1993).
[CrossRef]

1875 (1)

J. L. Soret and J. C. Poggendorff, Ann. Phys. Chem. (Leipzig) 156, 99 (1875); reprinted in J. Ojeda-Castaneda and C. Gomez-Reino, eds., Selected Papers on Zone Plates (SPIE Optical Engineering Press, Bellingham, Wash., 1996), pp. 11–25.
[CrossRef]

Barkou, S. E.

J. Broeng, D. Mogilevstev, S. E. Barkou, and A. Bjarklev, Opt. Fiber Technol. 5, 305 (1999).
[CrossRef]

Barton, S. K.

Y. J. Guo and S. K. Barton, IEEE Microwave Guided Wave Lett. 3, 417 (1993).
[CrossRef]

Bjarklev, A.

J. Broeng, D. Mogilevstev, S. E. Barkou, and A. Bjarklev, Opt. Fiber Technol. 5, 305 (1999).
[CrossRef]

Broeng, J.

J. Broeng, D. Mogilevstev, S. E. Barkou, and A. Bjarklev, Opt. Fiber Technol. 5, 305 (1999).
[CrossRef]

Buckley, E.

J. Canning, E. Buckley, K. Lyytikainen, and T. Ryan, Opt. Commun. 205, 95 (2002).
[CrossRef]

Canning, J.

J. Canning, Opt. Commun. 207, 35 (2002).
[CrossRef]

J. Canning, E. Buckley, K. Lyytikainen, and T. Ryan, Opt. Commun. 205, 95 (2002).
[CrossRef]

J. Canning, K. Sommer, S. Huntington, and A. L. G. Carter, Opt. Commun. 199, 375 (2001).
[CrossRef]

Carter, A. L. G.

J. Canning, K. Sommer, S. Huntington, and A. L. G. Carter, Opt. Commun. 199, 375 (2001).
[CrossRef]

Guo, Y. J.

Y. J. Guo and S. K. Barton, IEEE Microwave Guided Wave Lett. 3, 417 (1993).
[CrossRef]

Huntington, S.

J. Canning, K. Sommer, S. Huntington, and A. L. G. Carter, Opt. Commun. 199, 375 (2001).
[CrossRef]

Kantsyrev, V. L.

S. V. Khukhlevsky, G. Nyitray, and V. L. Kantsyrev, Phys. Rev. E 64, 026603 (2001).
[CrossRef]

Khukhlevsky, S. V.

S. V. Khukhlevsky, G. Nyitray, and V. L. Kantsyrev, Phys. Rev. E 64, 026603 (2001).
[CrossRef]

S. V. Khukhlevsky, Europhys. Lett. 54, 461 (2001).
[CrossRef]

Kurtz, T.

W. Lauterborn, T. Kurtz, and M. Wiesenfeldt, Coherent Optics (Springer-Verlag, Berlin, 1999).

Lauterborn, W.

W. Lauterborn, T. Kurtz, and M. Wiesenfeldt, Coherent Optics (Springer-Verlag, Berlin, 1999).

Lyytikainen, K.

J. Canning, E. Buckley, K. Lyytikainen, and T. Ryan, Opt. Commun. 205, 95 (2002).
[CrossRef]

Mogilevstev, D.

J. Broeng, D. Mogilevstev, S. E. Barkou, and A. Bjarklev, Opt. Fiber Technol. 5, 305 (1999).
[CrossRef]

Nyitray, G.

S. V. Khukhlevsky, G. Nyitray, and V. L. Kantsyrev, Phys. Rev. E 64, 026603 (2001).
[CrossRef]

Poggendorff, J. C.

J. L. Soret and J. C. Poggendorff, Ann. Phys. Chem. (Leipzig) 156, 99 (1875); reprinted in J. Ojeda-Castaneda and C. Gomez-Reino, eds., Selected Papers on Zone Plates (SPIE Optical Engineering Press, Bellingham, Wash., 1996), pp. 11–25.
[CrossRef]

Ryan, T.

J. Canning, E. Buckley, K. Lyytikainen, and T. Ryan, Opt. Commun. 205, 95 (2002).
[CrossRef]

Sommer, K.

J. Canning, K. Sommer, S. Huntington, and A. L. G. Carter, Opt. Commun. 199, 375 (2001).
[CrossRef]

Soret, J. L.

J. L. Soret and J. C. Poggendorff, Ann. Phys. Chem. (Leipzig) 156, 99 (1875); reprinted in J. Ojeda-Castaneda and C. Gomez-Reino, eds., Selected Papers on Zone Plates (SPIE Optical Engineering Press, Bellingham, Wash., 1996), pp. 11–25.
[CrossRef]

Wiesenfeldt, M.

W. Lauterborn, T. Kurtz, and M. Wiesenfeldt, Coherent Optics (Springer-Verlag, Berlin, 1999).

Ann. Phys. Chem. (Leipzig) (1)

J. L. Soret and J. C. Poggendorff, Ann. Phys. Chem. (Leipzig) 156, 99 (1875); reprinted in J. Ojeda-Castaneda and C. Gomez-Reino, eds., Selected Papers on Zone Plates (SPIE Optical Engineering Press, Bellingham, Wash., 1996), pp. 11–25.
[CrossRef]

Europhys. Lett. (1)

S. V. Khukhlevsky, Europhys. Lett. 54, 461 (2001).
[CrossRef]

IEEE Microwave Guided Wave Lett. (1)

Y. J. Guo and S. K. Barton, IEEE Microwave Guided Wave Lett. 3, 417 (1993).
[CrossRef]

Opt. Commun. (3)

J. Canning, K. Sommer, S. Huntington, and A. L. G. Carter, Opt. Commun. 199, 375 (2001).
[CrossRef]

J. Canning, Opt. Commun. 207, 35 (2002).
[CrossRef]

J. Canning, E. Buckley, K. Lyytikainen, and T. Ryan, Opt. Commun. 205, 95 (2002).
[CrossRef]

Opt. Fiber Technol. (1)

J. Broeng, D. Mogilevstev, S. E. Barkou, and A. Bjarklev, Opt. Fiber Technol. 5, 305 (1999).
[CrossRef]

Phys. Rev. E (1)

S. V. Khukhlevsky, G. Nyitray, and V. L. Kantsyrev, Phys. Rev. E 64, 026603 (2001).
[CrossRef]

Other (1)

W. Lauterborn, T. Kurtz, and M. Wiesenfeldt, Coherent Optics (Springer-Verlag, Berlin, 1999).

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Figures (4)

Fig. 1
Fig. 1

Schematic of field superposition leading to a peak intensity in the hole center. Light scattered from the air–silica interfaces adds constructively to produce a field distribution with peak intensity in the center.

Fig. 2
Fig. 2

Cross section of a 125µm Fresnel waveguide.

Fig. 3
Fig. 3

Near-field profiles of Fresnel fiber at (top) 633, (center) 1052, and (bottom) 1550 nm. White circles, hole positions of the first ring.

Fig. 4
Fig. 4

Near-field profile and far-field profiles as a function of distance away from the fiber end face.

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