Abstract

The modular interference characteristics of circular-core and elliptical-core two-mode fibers are investigated in theory. The intensity distribution and figure of two-lobe mode patterns are evaluated and simulated quantitatively for different phase difference change between LP01 and LP11^(even) mode. The interference mode patterns of elliptical-core and circular-core two-mode fibers are compared, the result shows that the two-lobe interference patterns of the two-mode fibers generate energy exchange and oscillation, and the difference is that the interference mode patterns of circular-core two-mode fiber are almost elliptical, while the interference mode pattern of elliptical-core two-mode fiber is approximately circular on condition that proper selection of the ellipticity. Their two-dimensional (2D) profile determines the choice of the core shape of the information pick-up fiber.

© 2006 Chinese Optics Letters

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1998 (1)

Y. Guan, Y. Gong, H. Li, T. Li, Z. Liang, and S. Jian, Optical Fiber and Electric Cable and Their Applications (in Chinese) (2) 19 (1998).

1996 (1)

M. A. Arbore, M. J. F. Digonnet, and R. H. Pantell, Opt. Fiber Technol. 2, 400 (1996).

1995 (1)

A. Wang, G. Z. Wang, and R. O. Claus, Opt. Fiber Technol. 1, 176 (1995).

1993 (1)

1991 (1)

A. Safaai-Jazi and J. C. McKeeman, J. Lightwave Technol. 9, 1047 (1991).

1990 (2)

K. A. Murphy, M. S. Miller, A. M. Vengsarkar, and R. O. Claus, J. Lightwave Technol. 8, 1688 (1990).

W. J. Bock and T. R. Wolinski, Opt. Lett. 15, 1434 (1990).

1989 (1)

H. G. Park and B. Y. Kim, Electron. Lett. 25, 797 (1989).

1988 (1)

1986 (2)

Arbore, M. A.

M. A. Arbore, M. J. F. Digonnet, and R. H. Pantell, Opt. Fiber Technol. 2, 400 (1996).

Blake, J. N.

Bock, W. J.

Claus, R. O.

A. Wang, G. Z. Wang, and R. O. Claus, Opt. Fiber Technol. 1, 176 (1995).

K. A. Murphy, M. S. Miller, A. M. Vengsarkar, and R. O. Claus, J. Lightwave Technol. 8, 1688 (1990).

Digonnet, M. J. F.

M. A. Arbore, M. J. F. Digonnet, and R. H. Pantell, Opt. Fiber Technol. 2, 400 (1996).

Engan, H. E.

Gong, Y.

Y. Guan, Y. Gong, H. Li, T. Li, Z. Liang, and S. Jian, Optical Fiber and Electric Cable and Their Applications (in Chinese) (2) 19 (1998).

Guan, Y.

Y. Guan, Y. Gong, H. Li, T. Li, Z. Liang, and S. Jian, Optical Fiber and Electric Cable and Their Applications (in Chinese) (2) 19 (1998).

Jian, S.

Y. Guan, Y. Gong, H. Li, T. Li, Z. Liang, and S. Jian, Optical Fiber and Electric Cable and Their Applications (in Chinese) (2) 19 (1998).

Kim, B. Y.

Kim, H. K.

Kim, S. K.

Li, H.

Y. Guan, Y. Gong, H. Li, T. Li, Z. Liang, and S. Jian, Optical Fiber and Electric Cable and Their Applications (in Chinese) (2) 19 (1998).

Li, T.

Y. Guan, Y. Gong, H. Li, T. Li, Z. Liang, and S. Jian, Optical Fiber and Electric Cable and Their Applications (in Chinese) (2) 19 (1998).

Liang, Z.

Y. Guan, Y. Gong, H. Li, T. Li, Z. Liang, and S. Jian, Optical Fiber and Electric Cable and Their Applications (in Chinese) (2) 19 (1998).

McKeeman, J. C.

A. Safaai-Jazi and J. C. McKeeman, J. Lightwave Technol. 9, 1047 (1991).

Miller, M. S.

K. A. Murphy, M. S. Miller, A. M. Vengsarkar, and R. O. Claus, J. Lightwave Technol. 8, 1688 (1990).

Murphy, K. A.

K. A. Murphy, M. S. Miller, A. M. Vengsarkar, and R. O. Claus, J. Lightwave Technol. 8, 1688 (1990).

Pantell, R. H.

M. A. Arbore, M. J. F. Digonnet, and R. H. Pantell, Opt. Fiber Technol. 2, 400 (1996).

Park, H. G.

Pohalski, C. C.

Safaai-Jazi, A.

A. Safaai-Jazi and J. C. McKeeman, J. Lightwave Technol. 9, 1047 (1991).

Shaw, H. J.

Sorin, W. V.

Vengsarkar, A. M.

K. A. Murphy, M. S. Miller, A. M. Vengsarkar, and R. O. Claus, J. Lightwave Technol. 8, 1688 (1990).

Wang, A.

A. Wang, G. Z. Wang, and R. O. Claus, Opt. Fiber Technol. 1, 176 (1995).

Wang, G. Z.

A. Wang, G. Z. Wang, and R. O. Claus, Opt. Fiber Technol. 1, 176 (1995).

Wolinski, T. R.

Electron. Lett. (1)

H. G. Park and B. Y. Kim, Electron. Lett. 25, 797 (1989).

J. Lightwave Technol. (2)

K. A. Murphy, M. S. Miller, A. M. Vengsarkar, and R. O. Claus, J. Lightwave Technol. 8, 1688 (1990).

A. Safaai-Jazi and J. C. McKeeman, J. Lightwave Technol. 9, 1047 (1991).

Opt. Fiber Technol. (2)

M. A. Arbore, M. J. F. Digonnet, and R. H. Pantell, Opt. Fiber Technol. 2, 400 (1996).

A. Wang, G. Z. Wang, and R. O. Claus, Opt. Fiber Technol. 1, 176 (1995).

Opt. Lett. (5)

Optical Fiber and Electric Cable and Their Applications (in Chinese) (1)

Y. Guan, Y. Gong, H. Li, T. Li, Z. Liang, and S. Jian, Optical Fiber and Electric Cable and Their Applications (in Chinese) (2) 19 (1998).

Other (5)

Y. Liao, Fiber Optics (in Chinese) (Tsinghua University Press, Beijing, 2000).

J. Zou, Research on All-Fiber Optical Voltage Transducer Based on Converse Piezoelectric Effect (in Chinese) PhD Thesis (Xi'an Jiaotong University, 2002).

T. A. Berkoff and A. D. Kersey, in Proceedings of 8th Optical Fiber Sensors Conf. 372 (1992).

K. A. Murphy, B. R. Fogg, and R. O. Claus, in Proceedings of 8th Optical Fiber Sensors Conf. 129 (1992).

J. O. Askautrud and H. E. Engan, in Proceedings of 8th Optical Fiber Sensors Conf. 101 (1992).

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