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Date November 2018 Marks available 1 Reference code 18N.3.SL.TZ0.10
Level Standard level Paper Paper 3 Time zone 0 - no time zone
Command term Suggest Question number 10 Adapted from N/A

Question

An optic fibre consists of a glass core of refractive index 1.52 surrounded by cladding of refractive index n. The critical angle at the glass–cladding boundary is 84°.

The diagram shows the longest and shortest paths that a ray can follow inside the fibre.

For the longest path the rays are incident at the core–cladding boundary at an angle just slightly greater than the critical angle. The optic fibre has a length of 12 km.

 

Calculate n.

[2]
a.i.

The refractive indices of the glass and cladding are only slightly different. Suggest why this is desirable.

[1]
a.ii.

Show that the longest path is 66 m longer than the shortest path.

[2]
b.i.

Determine the time delay between the arrival of signals created by the extra distance in (b)(i).

[2]
b.ii.

Suggest whether this fibre could be used to transmit information at a frequency of 100 MHz.

[1]
b.iii.

Markscheme

« sin θ c = n 1 n 2 » n1 = 1.52 × sin 84.0° ✔

 

n1 = 1.51 ✔

a.i.

to have a critical angle close to 90° ✔

so only rays parallel to the axis are transmitted ✔

to reduce waveguide/modal dispersion ✔

a.ii.

long path is  12 × 10 3 sin 84  ✔

= 12066 «m» ✔

«so 66 m longer»

b.i.

speed of light in core is  3.0 × 10 8 1.52 = 1.97 × 10 8 «m s−1» ✔

time delay is  66 1.97 × 10 8 = 3.35 × 10 7 «s» ✔

b.ii.

no, period of signal is 1 × 10−8 «s» which is smaller than the time delay/OWTTE ✔

 

b.iii.

Examiners report

[N/A]
a.i.
[N/A]
a.ii.
[N/A]
b.i.
[N/A]
b.ii.
[N/A]
b.iii.

Syllabus sections

Option C: Imaging » Option C: Imaging (Core topics) » C.3 – Fibre optics
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Option C: Imaging » Option C: Imaging (Core topics)
Option C: Imaging

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