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  1. J. P. Wittke, Proc. Inst. Radio Engrs. 45, 291 (1957); A. L. Schawlow, C. H. Townes, Phys. Rev. 112, 1940 (1958).
    [CrossRef]
  2. R. H. Dicke, Phys. Rev. 93, 99 (1954).
    [CrossRef]
  3. R. H. Dicke, in Quantum Electronics III, P. Grivet, N. Bloembergen, Eds. (Columbia University Press, New York, 1964).
  4. F. Schwabl, W. Thirring, in Ergebnisse der Exakten Natureissenschaften (Springer-Verlag, Berlin, 1964), Band 36, p. 219.
    [CrossRef]
  5. Lon O. Hocker, thesis (unpublished), Princeton University, 1964.

1957 (1)

J. P. Wittke, Proc. Inst. Radio Engrs. 45, 291 (1957); A. L. Schawlow, C. H. Townes, Phys. Rev. 112, 1940 (1958).
[CrossRef]

1954 (1)

R. H. Dicke, Phys. Rev. 93, 99 (1954).
[CrossRef]

Dicke, R. H.

R. H. Dicke, Phys. Rev. 93, 99 (1954).
[CrossRef]

R. H. Dicke, in Quantum Electronics III, P. Grivet, N. Bloembergen, Eds. (Columbia University Press, New York, 1964).

Hocker, Lon O.

Lon O. Hocker, thesis (unpublished), Princeton University, 1964.

Schwabl, F.

F. Schwabl, W. Thirring, in Ergebnisse der Exakten Natureissenschaften (Springer-Verlag, Berlin, 1964), Band 36, p. 219.
[CrossRef]

Thirring, W.

F. Schwabl, W. Thirring, in Ergebnisse der Exakten Natureissenschaften (Springer-Verlag, Berlin, 1964), Band 36, p. 219.
[CrossRef]

Wittke, J. P.

J. P. Wittke, Proc. Inst. Radio Engrs. 45, 291 (1957); A. L. Schawlow, C. H. Townes, Phys. Rev. 112, 1940 (1958).
[CrossRef]

Phys. Rev. (1)

R. H. Dicke, Phys. Rev. 93, 99 (1954).
[CrossRef]

Proc. Inst. Radio Engrs. (1)

J. P. Wittke, Proc. Inst. Radio Engrs. 45, 291 (1957); A. L. Schawlow, C. H. Townes, Phys. Rev. 112, 1940 (1958).
[CrossRef]

Other (3)

R. H. Dicke, in Quantum Electronics III, P. Grivet, N. Bloembergen, Eds. (Columbia University Press, New York, 1964).

F. Schwabl, W. Thirring, in Ergebnisse der Exakten Natureissenschaften (Springer-Verlag, Berlin, 1964), Band 36, p. 219.
[CrossRef]

Lon O. Hocker, thesis (unpublished), Princeton University, 1964.

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Figures (1)

Fig. 1
Fig. 1

Coherent and incoherent modes for a tube of lasing material.

Equations (4)

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( μ E / h ) 2 ( 12 π Δ ν ) - 1 × N × h ν > [ ( E 2 V / 8 π ) / ( Q / ω ) ]
n π ƛ 2 L > 1
λ / d = d / L ,
N > 4 π d 2 / λ 2

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