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References

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  1. H. Kildal, R. L. Byer, Proc. IEEE 59, 1664 (1971).
    [CrossRef]
  2. T. Kobayasi, H. Inaba, in Proc. 11th Sym. on Electron, Ion, and Laser Beam Technology, R. F. M. Thornley, Ed. (San Francisco Press, San Francisco, 19xx).
  3. R. T. H. Collis, in Advances in Geophysics, H. E. Lansberg, Van Mieghen, Eds. (Academic Press, New York1969), Vol. 13, pp. 113–38.
    [CrossRef]
  4. C. S. Cook et al., Appl. Opt. 11, 1742 (1972).
    [CrossRef] [PubMed]
  5. R. T. Menzies, Appl. Opt. 10, 1532 (1971).
    [CrossRef] [PubMed]
  6. H. Walther, J. L. Hall, Appl. Phys. Lett. 17, 239 (1970).
    [CrossRef]
  7. D. T. Williams, B. L. Kolitz, Appl. Opt. 7, 607 (1968).
    [CrossRef] [PubMed]

1972 (1)

1971 (2)

R. T. Menzies, Appl. Opt. 10, 1532 (1971).
[CrossRef] [PubMed]

H. Kildal, R. L. Byer, Proc. IEEE 59, 1664 (1971).
[CrossRef]

1970 (1)

H. Walther, J. L. Hall, Appl. Phys. Lett. 17, 239 (1970).
[CrossRef]

1968 (1)

Byer, R. L.

H. Kildal, R. L. Byer, Proc. IEEE 59, 1664 (1971).
[CrossRef]

Collis, R. T. H.

R. T. H. Collis, in Advances in Geophysics, H. E. Lansberg, Van Mieghen, Eds. (Academic Press, New York1969), Vol. 13, pp. 113–38.
[CrossRef]

Cook, C. S.

Hall, J. L.

H. Walther, J. L. Hall, Appl. Phys. Lett. 17, 239 (1970).
[CrossRef]

Inaba, H.

T. Kobayasi, H. Inaba, in Proc. 11th Sym. on Electron, Ion, and Laser Beam Technology, R. F. M. Thornley, Ed. (San Francisco Press, San Francisco, 19xx).

Kildal, H.

H. Kildal, R. L. Byer, Proc. IEEE 59, 1664 (1971).
[CrossRef]

Kobayasi, T.

T. Kobayasi, H. Inaba, in Proc. 11th Sym. on Electron, Ion, and Laser Beam Technology, R. F. M. Thornley, Ed. (San Francisco Press, San Francisco, 19xx).

Kolitz, B. L.

Menzies, R. T.

Walther, H.

H. Walther, J. L. Hall, Appl. Phys. Lett. 17, 239 (1970).
[CrossRef]

Williams, D. T.

Appl. Opt. (3)

Appl. Phys. Lett. (1)

H. Walther, J. L. Hall, Appl. Phys. Lett. 17, 239 (1970).
[CrossRef]

Proc. IEEE (1)

H. Kildal, R. L. Byer, Proc. IEEE 59, 1664 (1971).
[CrossRef]

Other (2)

T. Kobayasi, H. Inaba, in Proc. 11th Sym. on Electron, Ion, and Laser Beam Technology, R. F. M. Thornley, Ed. (San Francisco Press, San Francisco, 19xx).

R. T. H. Collis, in Advances in Geophysics, H. E. Lansberg, Van Mieghen, Eds. (Academic Press, New York1969), Vol. 13, pp. 113–38.
[CrossRef]

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Figures (1)

Fig. 1
Fig. 1

Schematic of lidar scheme for measuring spatial distribution of molecular pollutants.

Equations (11)

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P r λ 1 = ( P t λ 1 c T λ 1 β r λ 1 A K ) / ( 8 π r 2 ) ,
P r λ 1 = ( P t λ 1 c T λ 1 β r λ 1 A K ) / ( 8 π r 2 ) exp ( - 2 0 r α r λ 1 d r ) .
P r λ 1 / P r λ 2 = ( P t λ 1 / P t λ 2 ) ( T λ 1 / T λ 2 ) ( β λ 1 / β λ 2 ) exp [ - 2 0 r ( α r λ 1 - α r λ 2 ) d r ]
P r λ 1 P r λ 2 / P ( r + Δ r ) λ 1 P ( r + Δ r ) λ 2 = exp 2 r r + Δ r ( α r λ 1 - α r λ 2 ) ,
= 1 + Δ F r
α r λ 1 = a r ˙ λ 1 + σ r λ 1 N r ,
1 + Δ F r = exp 2 r r + Δ r [ ( a r λ 1 - a r λ 2 ) + N r ( σ λ 1 - σ λ 2 ) ] d r
N r = ln ( 1 + Δ F r ) / ( σ λ 1 - σ λ 2 ) Δ r
( P min / P r ) = { ( 4 q B / n S ) ( S / N ) min [ 1 + ( i d / S P r ) ] } 1 / 2 ,
P r = ( W c K a ray A / 4 π r 2 ) ,
a MIE = ( 3.91 / V ) ( 0.55 / λ ) 0.58 V 1 / 3 km - 1 ,

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