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References

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  1. A. Crocker et al., Nature 201, 250 (1964).
    [CrossRef]
  2. L. E. S. Mathias et al., Electron. Lett. 1, 45 (1965).
    [CrossRef]
  3. M. Yeow Ja, CSF Final Report, RADC TR66 185 (30December1965).
  4. J. E. Degenford, P. D. Coleman, Proc. IEEE 54, 520 (1966).
    [CrossRef]
  5. T. E. Talpey, IEEE Trans. MTT-2, 1 (1954).
  6. T. S. Moss, Optical Properties of Semi-Conductors (Butterworths, London, 1961), Chap. 1.
  7. P. L. Richards, J. Opt. Soc. Amer. 54, 1474 (1964).
    [CrossRef]

1966 (1)

J. E. Degenford, P. D. Coleman, Proc. IEEE 54, 520 (1966).
[CrossRef]

1965 (1)

L. E. S. Mathias et al., Electron. Lett. 1, 45 (1965).
[CrossRef]

1964 (2)

A. Crocker et al., Nature 201, 250 (1964).
[CrossRef]

P. L. Richards, J. Opt. Soc. Amer. 54, 1474 (1964).
[CrossRef]

1954 (1)

T. E. Talpey, IEEE Trans. MTT-2, 1 (1954).

Coleman, P. D.

J. E. Degenford, P. D. Coleman, Proc. IEEE 54, 520 (1966).
[CrossRef]

Crocker, A.

A. Crocker et al., Nature 201, 250 (1964).
[CrossRef]

Degenford, J. E.

J. E. Degenford, P. D. Coleman, Proc. IEEE 54, 520 (1966).
[CrossRef]

Mathias, L. E. S.

L. E. S. Mathias et al., Electron. Lett. 1, 45 (1965).
[CrossRef]

Moss, T. S.

T. S. Moss, Optical Properties of Semi-Conductors (Butterworths, London, 1961), Chap. 1.

Richards, P. L.

P. L. Richards, J. Opt. Soc. Amer. 54, 1474 (1964).
[CrossRef]

Talpey, T. E.

T. E. Talpey, IEEE Trans. MTT-2, 1 (1954).

Yeow Ja, M.

M. Yeow Ja, CSF Final Report, RADC TR66 185 (30December1965).

Electron. Lett. (1)

L. E. S. Mathias et al., Electron. Lett. 1, 45 (1965).
[CrossRef]

IEEE Trans. (1)

T. E. Talpey, IEEE Trans. MTT-2, 1 (1954).

J. Opt. Soc. Amer. (1)

P. L. Richards, J. Opt. Soc. Amer. 54, 1474 (1964).
[CrossRef]

Nature (1)

A. Crocker et al., Nature 201, 250 (1964).
[CrossRef]

Proc. IEEE (1)

J. E. Degenford, P. D. Coleman, Proc. IEEE 54, 520 (1966).
[CrossRef]

Other (2)

M. Yeow Ja, CSF Final Report, RADC TR66 185 (30December1965).

T. S. Moss, Optical Properties of Semi-Conductors (Butterworths, London, 1961), Chap. 1.

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Figures (5)

Fig. 1
Fig. 1

Carcinotron–Fabry-Perot resonator method.

Fig. 2
Fig. 2

Molecular laser–Brewster angle method.

Fig. 3
Fig. 3

Reflection grating monochromator.

Fig. 4
Fig. 4

Absorption index k and refractive index n of polyethylene.

Fig. 5
Fig. 5

Absorption index k and refractive index n of fused quartz.

Equations (7)

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n = 1 + L / d .
n = tan θ ,
k = n λ 0 ln t / [ 4 π d ( n 2 + 1 ) 1 2 ] ,
( m + 1 2 ) λ = 2 n d ,
m = 0 , 1 , 2 ,
T ( 1 - R ) 2 exp ( - 4 π k d / λ ) ,
R ( n - 1 ) 2 / ( n + 1 ) 2

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