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  1. N. Vali, R. W. Shorthill, Appl. Opt. 15, 1099 (1976).
    [CrossRef] [PubMed]
  2. A. Papp, H. Harms, J. Magn. Magn. Mater. 2, 287 (1976).
    [CrossRef]
  3. V. Ramaswamy, R. D. Standley, W. G. French; in Digest of Topical Meeting on Optical Fiber Transmission II (Optical Society of America, Washington, D.C., 1977), paper TUD4-1.
  4. W. A. Gambling, D. N. Payne, H. Matsumura, Ref. 3, paper TUD5-1.
  5. R. H. Stolen, V. Ramaswamy, P. Kaiser, in Digest of Topical Meeting on Integrated and Guided Wave Optics (Optical Society of America, Washington, D.C., 1978).
  6. J. Grabmaier, H. Schneider, E. Lebetzki, N. Douklias, Siemens Forsch. Entwicklungs, Ber. 5, 171 (1976).
  7. A. Papp, H. Harms, Appl. Opt. 14, 2406 (1975).
    [CrossRef] [PubMed]
  8. A. Papp, H. Harms, Appl. Opt. 16, 1315 (1977).
    [CrossRef] [PubMed]
  9. A. M. Smith, Appl. Opt. 17, 52 (1978).
    [CrossRef] [PubMed]

1978 (1)

1977 (1)

1976 (3)

N. Vali, R. W. Shorthill, Appl. Opt. 15, 1099 (1976).
[CrossRef] [PubMed]

A. Papp, H. Harms, J. Magn. Magn. Mater. 2, 287 (1976).
[CrossRef]

J. Grabmaier, H. Schneider, E. Lebetzki, N. Douklias, Siemens Forsch. Entwicklungs, Ber. 5, 171 (1976).

1975 (1)

Douklias, N.

J. Grabmaier, H. Schneider, E. Lebetzki, N. Douklias, Siemens Forsch. Entwicklungs, Ber. 5, 171 (1976).

French, W. G.

V. Ramaswamy, R. D. Standley, W. G. French; in Digest of Topical Meeting on Optical Fiber Transmission II (Optical Society of America, Washington, D.C., 1977), paper TUD4-1.

Gambling, W. A.

W. A. Gambling, D. N. Payne, H. Matsumura, Ref. 3, paper TUD5-1.

Grabmaier, J.

J. Grabmaier, H. Schneider, E. Lebetzki, N. Douklias, Siemens Forsch. Entwicklungs, Ber. 5, 171 (1976).

Harms, H.

Kaiser, P.

R. H. Stolen, V. Ramaswamy, P. Kaiser, in Digest of Topical Meeting on Integrated and Guided Wave Optics (Optical Society of America, Washington, D.C., 1978).

Lebetzki, E.

J. Grabmaier, H. Schneider, E. Lebetzki, N. Douklias, Siemens Forsch. Entwicklungs, Ber. 5, 171 (1976).

Matsumura, H.

W. A. Gambling, D. N. Payne, H. Matsumura, Ref. 3, paper TUD5-1.

Papp, A.

Payne, D. N.

W. A. Gambling, D. N. Payne, H. Matsumura, Ref. 3, paper TUD5-1.

Ramaswamy, V.

V. Ramaswamy, R. D. Standley, W. G. French; in Digest of Topical Meeting on Optical Fiber Transmission II (Optical Society of America, Washington, D.C., 1977), paper TUD4-1.

R. H. Stolen, V. Ramaswamy, P. Kaiser, in Digest of Topical Meeting on Integrated and Guided Wave Optics (Optical Society of America, Washington, D.C., 1978).

Schneider, H.

J. Grabmaier, H. Schneider, E. Lebetzki, N. Douklias, Siemens Forsch. Entwicklungs, Ber. 5, 171 (1976).

Shorthill, R. W.

Smith, A. M.

Standley, R. D.

V. Ramaswamy, R. D. Standley, W. G. French; in Digest of Topical Meeting on Optical Fiber Transmission II (Optical Society of America, Washington, D.C., 1977), paper TUD4-1.

Stolen, R. H.

R. H. Stolen, V. Ramaswamy, P. Kaiser, in Digest of Topical Meeting on Integrated and Guided Wave Optics (Optical Society of America, Washington, D.C., 1978).

Vali, N.

Appl. Opt. (4)

J. Magn. Magn. Mater. (1)

A. Papp, H. Harms, J. Magn. Magn. Mater. 2, 287 (1976).
[CrossRef]

Siemens Forsch. Entwicklungs, Ber. (1)

J. Grabmaier, H. Schneider, E. Lebetzki, N. Douklias, Siemens Forsch. Entwicklungs, Ber. 5, 171 (1976).

Other (3)

V. Ramaswamy, R. D. Standley, W. G. French; in Digest of Topical Meeting on Optical Fiber Transmission II (Optical Society of America, Washington, D.C., 1977), paper TUD4-1.

W. A. Gambling, D. N. Payne, H. Matsumura, Ref. 3, paper TUD5-1.

R. H. Stolen, V. Ramaswamy, P. Kaiser, in Digest of Topical Meeting on Integrated and Guided Wave Optics (Optical Society of America, Washington, D.C., 1978).

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Figures (3)

Fig. 1
Fig. 1

Cross section of preform for drawing single-mode optical fibers of low birefringence. The approximately 0.7-mm thick SiO2 core circular cross section shows up clearly. The refractive index of the middle region was reduced by adding B2O3.

Fig. 2
Fig. 2

Methods of winding determining the shape-dependent birefringence: (a) plane winding (cross-sectional drawing); (b) compensation winding (schematic representation of type of winding). The winding plane is changed after every odd number of half-turn. The use of a specially shaped body allows the fiber to be wound with zero pitch.

Fig. 3
Fig. 3

Phase shift δ as a function of the number n of turns for two single-mode fibers with and without compensation of the shape-dependent birefringence (· + fiber 1; □ Δ fiber 2). One turn corresponds to a fiber length of about 0.5 m.

Tables (1)

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Table I Phase Shift Measurements of Single-Mode Fibers

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