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References

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  1. A. R. Johnston, A Review of NASA Fiber Optics Tasks, Proceedings, Intelcom, Atlanta, Ga. (October1977).
  2. E. Leitz, Inc., New York, N.Y.
  3. Type PS-05-40, ITT Corporation, Electro-Optical Products Division, Roanoke, Va.
  4. Dow Corning Corporation, Midland, Mich.
  5. Shin-etsu Chemicals, Japan.
  6. Type PFX S120R, E. I. duPont de Nemours & Company, Plastics Department, Wilmington, Del.
  7. Type GS-02-10, ITT Corporation, Electro-Optical Products Division, Roanoke, Va.
  8. Type 1028, Corning Glass Works, Telecommunication Products Department, Corning, N.Y.

Johnston, A. R.

A. R. Johnston, A Review of NASA Fiber Optics Tasks, Proceedings, Intelcom, Atlanta, Ga. (October1977).

Leitz, E.

E. Leitz, Inc., New York, N.Y.

Other (8)

A. R. Johnston, A Review of NASA Fiber Optics Tasks, Proceedings, Intelcom, Atlanta, Ga. (October1977).

E. Leitz, Inc., New York, N.Y.

Type PS-05-40, ITT Corporation, Electro-Optical Products Division, Roanoke, Va.

Dow Corning Corporation, Midland, Mich.

Shin-etsu Chemicals, Japan.

Type PFX S120R, E. I. duPont de Nemours & Company, Plastics Department, Wilmington, Del.

Type GS-02-10, ITT Corporation, Electro-Optical Products Division, Roanoke, Va.

Type 1028, Corning Glass Works, Telecommunication Products Department, Corning, N.Y.

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Figures (3)

Fig. 1
Fig. 1

Normalized transmitted power vs temperature for different fibers.

Fig. 2
Fig. 2

Index of refraction vs temperature for Dow Corning silicone Sylgard 184 and the Shin-etsu polymer.

Fig. 3
Fig. 3

Induced attenuation coefficients vs temperature for CVD step-index fiber with polyurethane jacket.8

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