Download - F3 - Optical fibres

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Page 1: F3 - Optical fibres

Refraction

Snell’s Law

.........but as the angle of incidence increases, eventually:

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...you reach the critical angle:

This is the same as saying the angle of refraction is 90Β°

....but

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π‘…π‘’π‘“π‘Ÿπ‘Žπ‘π‘‘π‘–π‘£π‘’ 𝐼𝑛𝑑𝑒π‘₯ ( π΄π‘–π‘Ÿ π‘‘π‘œπΊπ‘™π‘Žπ‘ π‘  )=π‘£π‘Ž

𝑣𝑔

Refractive Index is the ratio of wave speeds in two mediums:

π‘…π‘’π‘“π‘Ÿπ‘Žπ‘π‘‘π‘–π‘£π‘’ 𝐼𝑛𝑑𝑒π‘₯ (πΊπ‘™π‘Žπ‘ π‘ π‘‘π‘œ π΄π‘–π‘Ÿ )=𝑣𝑔

π‘£π‘Ž

So: 1

π‘…π‘’π‘“π‘Ÿπ‘Žπ‘π‘‘π‘–π‘£π‘’ 𝐼𝑛𝑑𝑒π‘₯ (π΄π‘–π‘Ÿ π‘‘π‘œπΊπ‘™π‘Žπ‘ π‘ )π‘…π‘’π‘“π‘Ÿπ‘Žπ‘π‘‘π‘–π‘£π‘’ 𝐼𝑛𝑑𝑒π‘₯ (πΊπ‘™π‘Žπ‘ π‘ π‘‘π‘œ π΄π‘–π‘Ÿ )=ΒΏ

From before:

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When light hits a surface at an angle of incidence bigger than the critical angle then:

TOTAL INTERNAL REFLECTION

None of the light is transmitted ALL the light is reflected

This is the basis of Optical Fibres

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DispersionThis is when signals spread out as they travel along the fibre.

This can cause problems with data

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1.

2.

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