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References

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  1. Laser Focus 18, 103 (1982); attributed to W. Koster in Ref. 6.
  2. T. Horimatsu, M. Sasaki, K. Aoyama, Appl. Opt. 19, 1984 (1980).
    [CrossRef] [PubMed]
  3. D. Botez, IEEE J. Quantum Electron. QE-17, 2290 (1981).
    [CrossRef]
  4. No significant reduction of coupling efficiency was observed when the fiber was coated along a portion of its length with a mode stripping compound. The efficiency measured here was lower than the 78% maximum reported in Ref. 1.
  5. T. Kanada, K. Nawata, IEEE J. Quantum Electron. QE-15, 559 (1979).
    [CrossRef]
  6. W. Bludau, R. Rossberg, Appl. Opt. 21, 1933 (1982).
    [CrossRef] [PubMed]
  7. L. Goldberg, H. F. Taylor, A. Dandridge, J. F. Weller, R. O. Miles, IEEE J. Quant. Electron. QE-18, 555 (1982).
    [CrossRef]
  8. I. Ikushima, M. Maeda, IEEE J. Quantum Electron. QE-14, 331 (1978).
    [CrossRef]
  9. A. Ankiewicz, C. Pask, Opt. Quantum Electron. 9, 87 (1977).
    [CrossRef]

1982 (3)

Laser Focus 18, 103 (1982); attributed to W. Koster in Ref. 6.

L. Goldberg, H. F. Taylor, A. Dandridge, J. F. Weller, R. O. Miles, IEEE J. Quant. Electron. QE-18, 555 (1982).
[CrossRef]

W. Bludau, R. Rossberg, Appl. Opt. 21, 1933 (1982).
[CrossRef] [PubMed]

1981 (1)

D. Botez, IEEE J. Quantum Electron. QE-17, 2290 (1981).
[CrossRef]

1980 (1)

1979 (1)

T. Kanada, K. Nawata, IEEE J. Quantum Electron. QE-15, 559 (1979).
[CrossRef]

1978 (1)

I. Ikushima, M. Maeda, IEEE J. Quantum Electron. QE-14, 331 (1978).
[CrossRef]

1977 (1)

A. Ankiewicz, C. Pask, Opt. Quantum Electron. 9, 87 (1977).
[CrossRef]

Ankiewicz, A.

A. Ankiewicz, C. Pask, Opt. Quantum Electron. 9, 87 (1977).
[CrossRef]

Aoyama, K.

Bludau, W.

Botez, D.

D. Botez, IEEE J. Quantum Electron. QE-17, 2290 (1981).
[CrossRef]

Dandridge, A.

L. Goldberg, H. F. Taylor, A. Dandridge, J. F. Weller, R. O. Miles, IEEE J. Quant. Electron. QE-18, 555 (1982).
[CrossRef]

Goldberg, L.

L. Goldberg, H. F. Taylor, A. Dandridge, J. F. Weller, R. O. Miles, IEEE J. Quant. Electron. QE-18, 555 (1982).
[CrossRef]

Horimatsu, T.

Ikushima, I.

I. Ikushima, M. Maeda, IEEE J. Quantum Electron. QE-14, 331 (1978).
[CrossRef]

Kanada, T.

T. Kanada, K. Nawata, IEEE J. Quantum Electron. QE-15, 559 (1979).
[CrossRef]

Maeda, M.

I. Ikushima, M. Maeda, IEEE J. Quantum Electron. QE-14, 331 (1978).
[CrossRef]

Miles, R. O.

L. Goldberg, H. F. Taylor, A. Dandridge, J. F. Weller, R. O. Miles, IEEE J. Quant. Electron. QE-18, 555 (1982).
[CrossRef]

Nawata, K.

T. Kanada, K. Nawata, IEEE J. Quantum Electron. QE-15, 559 (1979).
[CrossRef]

Pask, C.

A. Ankiewicz, C. Pask, Opt. Quantum Electron. 9, 87 (1977).
[CrossRef]

Rossberg, R.

Sasaki, M.

Taylor, H. F.

L. Goldberg, H. F. Taylor, A. Dandridge, J. F. Weller, R. O. Miles, IEEE J. Quant. Electron. QE-18, 555 (1982).
[CrossRef]

Weller, J. F.

L. Goldberg, H. F. Taylor, A. Dandridge, J. F. Weller, R. O. Miles, IEEE J. Quant. Electron. QE-18, 555 (1982).
[CrossRef]

Appl. Opt. (2)

IEEE J. Quant. Electron. (1)

L. Goldberg, H. F. Taylor, A. Dandridge, J. F. Weller, R. O. Miles, IEEE J. Quant. Electron. QE-18, 555 (1982).
[CrossRef]

IEEE J. Quantum Electron. (3)

I. Ikushima, M. Maeda, IEEE J. Quantum Electron. QE-14, 331 (1978).
[CrossRef]

D. Botez, IEEE J. Quantum Electron. QE-17, 2290 (1981).
[CrossRef]

T. Kanada, K. Nawata, IEEE J. Quantum Electron. QE-15, 559 (1979).
[CrossRef]

Laser Focus (1)

Laser Focus 18, 103 (1982); attributed to W. Koster in Ref. 6.

Opt. Quantum Electron. (1)

A. Ankiewicz, C. Pask, Opt. Quantum Electron. 9, 87 (1977).
[CrossRef]

Other (1)

No significant reduction of coupling efficiency was observed when the fiber was coated along a portion of its length with a mode stripping compound. The efficiency measured here was lower than the 78% maximum reported in Ref. 1.

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Figures (4)

Fig. 1
Fig. 1

SEM photomicrograph of the polished wedge at the input end of fiber.

Fig. 2
Fig. 2

Geometry of the fiber acceptance angle.

Fig. 3
Fig. 3

Geometry of the fiber output bevel.

Fig. 4
Fig. 4

Spectra from a CDH single-mode laser: (top) direct output from laser; (bottom) output from fiber end.

Equations (4)

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θ = sin 1 { n 1 sin [ ϕ + cos 1 ( n 2 / n 1 ) ] } ϕ ,
ψ min = 90 [ sin 1 ( 1 / n 1 ) cos 1 ( n 2 / n 1 ) ] .
cos 1 ( 1 / n 1 ) + cos 1 ( n 2 / n 1 ) < ω < sin 1 ( n 2 / n 1 ) .
δ = sin 1 ( n 1 sin ρ ) ρ ,

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