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References

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  1. S. C. Rashleigh, Opt. Lett. 5, 392 (1980).
    [CrossRef] [PubMed]
  2. S. C. Rashleigh, H. F. Taylor, Electron. Lett. 17, 138 (1981).
    [CrossRef]
  3. S. C. Rashleigh, Opt. Lett. 6, 19 (1981).
    [CrossRef] [PubMed]
  4. R. H. Stolen, V. Ramaswamy, P. Kaiser, W. Pleibel, Appl. Phys. Lett. 33, 699 (1978).
    [CrossRef]
  5. Y. Namihira, M. Kudo, Y. Mushiake, Trans. IECE 60-C, 391 (1977).
  6. S. C. Rashleigh, R. Ulrich, Opt. Lett. 5, 354 (1980).
    [CrossRef] [PubMed]
  7. R. Ulrich, Appl. Phys. Lett. 35, 840 (1979),
    [CrossRef]
  8. D. A. Jackson, R. Priest, A. Dandridge, A. B. Tveten, Appl. Opt. 19, 2926 (1980).
    [CrossRef] [PubMed]
  9. R. Ulrich, Opt. Lett. 1, 109 (1977).
    [CrossRef] [PubMed]
  10. H. I. Heaton, Appl. Opt. 19, 3719 (1980).
    [CrossRef] [PubMed]
  11. S. C. Rashleigh, R. Ulrich, Appl. Phys. Lett. 34, 768 (1979).
    [CrossRef]

1981 (2)

S. C. Rashleigh, H. F. Taylor, Electron. Lett. 17, 138 (1981).
[CrossRef]

S. C. Rashleigh, Opt. Lett. 6, 19 (1981).
[CrossRef] [PubMed]

1980 (4)

1979 (2)

R. Ulrich, Appl. Phys. Lett. 35, 840 (1979),
[CrossRef]

S. C. Rashleigh, R. Ulrich, Appl. Phys. Lett. 34, 768 (1979).
[CrossRef]

1978 (1)

R. H. Stolen, V. Ramaswamy, P. Kaiser, W. Pleibel, Appl. Phys. Lett. 33, 699 (1978).
[CrossRef]

1977 (2)

Y. Namihira, M. Kudo, Y. Mushiake, Trans. IECE 60-C, 391 (1977).

R. Ulrich, Opt. Lett. 1, 109 (1977).
[CrossRef] [PubMed]

Dandridge, A.

Heaton, H. I.

Jackson, D. A.

Kaiser, P.

R. H. Stolen, V. Ramaswamy, P. Kaiser, W. Pleibel, Appl. Phys. Lett. 33, 699 (1978).
[CrossRef]

Kudo, M.

Y. Namihira, M. Kudo, Y. Mushiake, Trans. IECE 60-C, 391 (1977).

Mushiake, Y.

Y. Namihira, M. Kudo, Y. Mushiake, Trans. IECE 60-C, 391 (1977).

Namihira, Y.

Y. Namihira, M. Kudo, Y. Mushiake, Trans. IECE 60-C, 391 (1977).

Pleibel, W.

R. H. Stolen, V. Ramaswamy, P. Kaiser, W. Pleibel, Appl. Phys. Lett. 33, 699 (1978).
[CrossRef]

Priest, R.

Ramaswamy, V.

R. H. Stolen, V. Ramaswamy, P. Kaiser, W. Pleibel, Appl. Phys. Lett. 33, 699 (1978).
[CrossRef]

Rashleigh, S. C.

Stolen, R. H.

R. H. Stolen, V. Ramaswamy, P. Kaiser, W. Pleibel, Appl. Phys. Lett. 33, 699 (1978).
[CrossRef]

Taylor, H. F.

S. C. Rashleigh, H. F. Taylor, Electron. Lett. 17, 138 (1981).
[CrossRef]

Tveten, A. B.

Ulrich, R.

S. C. Rashleigh, R. Ulrich, Opt. Lett. 5, 354 (1980).
[CrossRef] [PubMed]

R. Ulrich, Appl. Phys. Lett. 35, 840 (1979),
[CrossRef]

S. C. Rashleigh, R. Ulrich, Appl. Phys. Lett. 34, 768 (1979).
[CrossRef]

R. Ulrich, Opt. Lett. 1, 109 (1977).
[CrossRef] [PubMed]

Appl. Opt. (2)

Appl. Phys. Lett. (3)

R. H. Stolen, V. Ramaswamy, P. Kaiser, W. Pleibel, Appl. Phys. Lett. 33, 699 (1978).
[CrossRef]

R. Ulrich, Appl. Phys. Lett. 35, 840 (1979),
[CrossRef]

S. C. Rashleigh, R. Ulrich, Appl. Phys. Lett. 34, 768 (1979).
[CrossRef]

Electron. Lett. (1)

S. C. Rashleigh, H. F. Taylor, Electron. Lett. 17, 138 (1981).
[CrossRef]

Opt. Lett. (4)

Trans. IECE (1)

Y. Namihira, M. Kudo, Y. Mushiake, Trans. IECE 60-C, 391 (1977).

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Figures (3)

Fig. 1
Fig. 1

Schematic configuration of the environmentally insensitive polarirnetric fiber-optic sensor.

Fig. 2
Fig. 2

Poincaré sphere representation of the detection scheme.

Fig. 3
Fig. 3

Plots of the sensor sensitivity (—) and the temperature (- - -) as the sensor is heated (a) with only two detectors sensing output states P and Q, and (b) with all four detectors sensing output states P, Q, L, and R operative.

Equations (5)

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T P Q = I P I Q I P + I Q = cos ( ψ 0 + Δ ψ ) ,
T L R = I L I R I L + I R = sin ( ψ 0 + Δ ψ ) ,
S P Q = 2 J 1 ( Δ ψ ) sin ψ 0 ,
S L R = 2 J 1 ( Δ ψ ) cos ψ 0 ,
S = S P Q 2 + S L R 2 = 2 J 1 ( Δ ψ ) Δ ψ .

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