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References

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  1. A. Balbin Villaverde, D. A. Donatti, D. G. Bozinis, J. Phys. C 11, L495 (1978).
    [CrossRef]
  2. Technical Progress in Hoya Laser Glass, Hoya Optics, Inc., 2180 Sand Hill Rd., Menlo Park, Calif. 94025.
  3. I. Yoshino, Jpn. J. Appl. Phys. 19, 745 (1980).
    [CrossRef]
  4. Hoya Faraday Rotator Glass Report, Hoya Optics, Inc.2180 Sand Hill Rd., Menlo Park, Calif. 94025.
  5. K. Dismukes, S. H. Lott, J. P. Barach, Appl. Opt. 5, 1246 (1966).
    [CrossRef] [PubMed]
  6. N. George, R. W. Waniek, S. W. Lee, Appl. Opt. 4, 253 (1965).
    [CrossRef]

1980 (1)

I. Yoshino, Jpn. J. Appl. Phys. 19, 745 (1980).
[CrossRef]

1978 (1)

A. Balbin Villaverde, D. A. Donatti, D. G. Bozinis, J. Phys. C 11, L495 (1978).
[CrossRef]

1966 (1)

1965 (1)

Balbin Villaverde, A.

A. Balbin Villaverde, D. A. Donatti, D. G. Bozinis, J. Phys. C 11, L495 (1978).
[CrossRef]

Barach, J. P.

Bozinis, D. G.

A. Balbin Villaverde, D. A. Donatti, D. G. Bozinis, J. Phys. C 11, L495 (1978).
[CrossRef]

Dismukes, K.

Donatti, D. A.

A. Balbin Villaverde, D. A. Donatti, D. G. Bozinis, J. Phys. C 11, L495 (1978).
[CrossRef]

George, N.

Lee, S. W.

Lott, S. H.

Waniek, R. W.

Yoshino, I.

I. Yoshino, Jpn. J. Appl. Phys. 19, 745 (1980).
[CrossRef]

Appl. Opt. (2)

J. Phys. C (1)

A. Balbin Villaverde, D. A. Donatti, D. G. Bozinis, J. Phys. C 11, L495 (1978).
[CrossRef]

Jpn. J. Appl. Phys. (1)

I. Yoshino, Jpn. J. Appl. Phys. 19, 745 (1980).
[CrossRef]

Other (2)

Hoya Faraday Rotator Glass Report, Hoya Optics, Inc.2180 Sand Hill Rd., Menlo Park, Calif. 94025.

Technical Progress in Hoya Laser Glass, Hoya Optics, Inc., 2180 Sand Hill Rd., Menlo Park, Calif. 94025.

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Figures (3)

Fig. 1
Fig. 1

Verdet constant of Hoya AOT-5 and AOT-44B glasses as a function of wavelength.

Fig. 2
Fig. 2

Verdet constant of Hoya FR-5 glass as a function of wavelength.

Fig. 3
Fig. 3

Hysteresis effect on the Faraday rotation for AOT-5 glass with the 0.6328-μm laser line.

Tables (1)

Tables Icon

Table I Verdet Constant of Hoya Glasses: AOT-44B, AOT-5 and FR-5 as a Function of the Wavelength

Equations (3)

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V ( λ ) = 0.0276 + 0.98 × 10 2 λ 2 + 0.473 × 10 2 λ 4 ,
V ( λ ) = 0.0162 + 0.96 × 10 2 λ 2 + 0.36 × 10 2 λ 4 , and
V ( λ ) = 0.0781 0.128 λ 2 0.513 × 10 3 λ 4 ,

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