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References

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  1. G. Toraldo di Francia, Nuovo Cimento Suppl. 9, 426 (1952).
    [CrossRef]
  2. B. Roy Frieden, Appl. Opt. 9, 2489 (1970).
    [CrossRef]
  3. B. Roy Frieden, in Progress in Optics, E. Wolf, Ed. (North Holland, Amsterdam, 197x).
  4. G. Lansraux, Rov. Opt. 26, 24, 278 (1947).
  5. A. Boivin, Appl. Opt. 6, 1633 (1967).
    [CrossRef]

1970 (1)

1967 (1)

A. Boivin, Appl. Opt. 6, 1633 (1967).
[CrossRef]

1952 (1)

G. Toraldo di Francia, Nuovo Cimento Suppl. 9, 426 (1952).
[CrossRef]

1947 (1)

G. Lansraux, Rov. Opt. 26, 24, 278 (1947).

Boivin, A.

A. Boivin, Appl. Opt. 6, 1633 (1967).
[CrossRef]

Lansraux, G.

G. Lansraux, Rov. Opt. 26, 24, 278 (1947).

Roy Frieden, B.

B. Roy Frieden, Appl. Opt. 9, 2489 (1970).
[CrossRef]

B. Roy Frieden, in Progress in Optics, E. Wolf, Ed. (North Holland, Amsterdam, 197x).

Toraldo di Francia, G.

G. Toraldo di Francia, Nuovo Cimento Suppl. 9, 426 (1952).
[CrossRef]

Appl. Opt. (2)

Nuovo Cimento Suppl. (1)

G. Toraldo di Francia, Nuovo Cimento Suppl. 9, 426 (1952).
[CrossRef]

Rov. Opt. (1)

G. Lansraux, Rov. Opt. 26, 24, 278 (1947).

Other (1)

B. Roy Frieden, in Progress in Optics, E. Wolf, Ed. (North Holland, Amsterdam, 197x).

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Figures (2)

Fig. 1
Fig. 1

Point spread function.

Fig. 2
Fig. 2

Pupil associated with Fig. 1.

Equations (5)

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f ( r 2 ) = n = 0 ( - 1 ) n [ f ( n ) ( 1 ) / n ! ] ( 1 - r 2 ) n ,
f ( r 2 ) = n = 0 ( - 1 ) n [ f ( n ) ( 0 ) / ( n + 1 ) ! ] r 2 n
G ( z ) = n = 0 ( - 1 ) n [ f ( n ) ( 1 ) / ( n + 1 ) ! ] L n + 1 ( z ) ,
G ( z ) = n = 0 [ f ( n ) ( 0 ) / ( n + 1 ) ! ] A n + 1 ( z ) ,
A n + 1 ( z ) = 2 ( n + 1 ) 0 1 r 2 n J 0 ( z r ) r d .

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