Exo 2: Number of modes in a hopped-index fiber A fiber has a fractional index jump of A = 5 x 10-2 with a core index of 1.5. Calculate the radius a of the fiber to obtain propagation over 5 modes for an operating wavelength (in vacuum) of 1.2 μm.
Exo 2: Number of modes in a hopped-index fiber A fiber has a fractional index jump of A = 5 x 10-2 with a core index of 1.5. Calculate the radius a of the fiber to obtain propagation over 5 modes for an operating wavelength (in vacuum) of 1.2 μm.
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![Exo 2: Number of modes in a hopped-index fiber
A fiber has a fractional index jump of A = 5 x 10-2 with a core index of 1.5. Calculate the
radius a of the fiber to obtain propagation over 5 modes for an operating wavelength
(in vacuum) of 1.2 μm.](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2F1c584b28-d8d5-4ed1-a9a9-ae34dfb82cb8%2F3949a434-3582-4bfe-825e-293955552070%2Fzj8847g_processed.jpeg&w=3840&q=75)
Transcribed Image Text:Exo 2: Number of modes in a hopped-index fiber
A fiber has a fractional index jump of A = 5 x 10-2 with a core index of 1.5. Calculate the
radius a of the fiber to obtain propagation over 5 modes for an operating wavelength
(in vacuum) of 1.2 μm.
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