How would you design a 1.5 µm edge- emitting semiconductor laser to generate a 40 GHz pulse stream? You should consider factors such as the length of the cavity, the refractive index of the material, and indicate other typical dimensions of the device. How many wavelengths does the cavity length correspond to?
How would you design a 1.5 µm edge- emitting semiconductor laser to generate a 40 GHz pulse stream? You should consider factors such as the length of the cavity, the refractive index of the material, and indicate other typical dimensions of the device. How many wavelengths does the cavity length correspond to?
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![How would you design a 1.5 µm edge-
emitting semiconductor laser to generate a
40 GHz pulse stream? You should consider
factors such as the length of the cavity, the
refractive index of the material, and indicate
other typical dimensions of the device. How
many wavelengths does the cavity length
correspond to?](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2Fd60b9b9c-8773-4805-a92f-282e37a65ca5%2F3f14372b-6ac5-4345-bd47-ad082a9dd5f3%2Fnfirjpl_processed.jpeg&w=3840&q=75)
Transcribed Image Text:How would you design a 1.5 µm edge-
emitting semiconductor laser to generate a
40 GHz pulse stream? You should consider
factors such as the length of the cavity, the
refractive index of the material, and indicate
other typical dimensions of the device. How
many wavelengths does the cavity length
correspond to?
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