The provided image shows the steps to find the ray transfer matrix for a thick biconvex lens (n=1.5) with a radius of curvature for the front and back face of 10cm. If this was a thin lens, then element C of the ABCD matrix would equal -1/f. What thickness t gives you a 10% change in this C value?

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Chapter2: Geometric Optics And Image Formation
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The provided image shows the steps to find the ray transfer matrix for a thick biconvex lens (n=1.5) with a radius of curvature for the front and back face of 10cm.

If this was a thin lens, then element C of the ABCD matrix would equal -1/f. What thickness t gives you a 10% change in this C value? (List the thickness in cm)

1) refraction at a curved interface (R is + if medium 2 (glass) is convex, and in this case it is,
so use + R)
1
n₁-n₂
R*n2
0
Ca.
n₂
2) propagate the thickness of the lens t
[1]
3) refraction at a curved interface (R is + if medium 2 (air) is convex, and in this case it isn't,
so use -R)
1
n1-n₂
R*n2
0
ni
n₂
121
Transcribed Image Text:1) refraction at a curved interface (R is + if medium 2 (glass) is convex, and in this case it is, so use + R) 1 n₁-n₂ R*n2 0 Ca. n₂ 2) propagate the thickness of the lens t [1] 3) refraction at a curved interface (R is + if medium 2 (air) is convex, and in this case it isn't, so use -R) 1 n1-n₂ R*n2 0 ni n₂ 121
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