Cladding Cladding CORE n1 n2 Figure shows a fiber in which cladding is removed over a length x. nl = 1.5, n2 = 1.4. What will happen to the output power if the bare portion is covered with a liquid with refractive index i) n3 = 1.5 ii) n3 = 1.4. Assume no dispersion losses.
Cladding Cladding CORE n1 n2 Figure shows a fiber in which cladding is removed over a length x. nl = 1.5, n2 = 1.4. What will happen to the output power if the bare portion is covered with a liquid with refractive index i) n3 = 1.5 ii) n3 = 1.4. Assume no dispersion losses.
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Figure shows a fiber in which cladding is removed over a length x. n1 =1.5, n2=1.4 . What will happen to the output power if the bare portion is covered with a liquid with refractive index I) n3 =1.5 ii) n3 =1.4 .Assume no dispersion losses.
![Cladkding A
CORE
n1
n2
Cladding
Figure shows a fiber in which cladding is removed over a length
x. nl = 1.5, n2 = 1.4. What will happen to the output power if
the bare portion is covered with a liquid with refractive index i)
n3 = 1.5 ii) n3 = 1.4. Assume no dispersion losses.](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2F6a883b0c-0a9e-4aaa-aab6-b15228a2069e%2F9611aac9-71a2-4391-bcd0-e9800da549de%2Fxgf8a3_processed.jpeg&w=3840&q=75)
Transcribed Image Text:Cladkding A
CORE
n1
n2
Cladding
Figure shows a fiber in which cladding is removed over a length
x. nl = 1.5, n2 = 1.4. What will happen to the output power if
the bare portion is covered with a liquid with refractive index i)
n3 = 1.5 ii) n3 = 1.4. Assume no dispersion losses.
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