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This section includes 28 Mcqs, each offering curated multiple-choice questions to sharpen your Optical Communication knowledge and support exam preparation. Choose a topic below to get started.
1. |
Stimulated Raman scattering may have an optical power threshold of may be three orders of magnitude ___________ |
A. | Lower than Brillouin threshold |
B. | Higher than Brillouin threshold |
C. | Same as Brillouin threshold |
D. | Higher than Rayleigh threshold |
Answer» C. Same as Brillouin threshold | |
2. |
Stimulated Raman scattering occur in ___________ |
A. | Forward direction |
B. | Backward direction |
C. | Upward direction |
D. | Forward and backward direction |
Answer» E. | |
3. |
High frequency optical phonon is generated in stimulated Raman scattering. |
A. | False |
B. | True |
Answer» C. | |
4. |
Stimulated Brillouin scattering is mainly a ___________ |
A. | Forward process |
B. | Backward process |
C. | Upward process |
D. | Downward process |
Answer» C. Upward process | |
5. |
0.4 dB/km, 1.4μm, 6μm, 550MHz. Find threshold optical power for stimulated Raman scattering. |
A. | 1.98 W |
B. | 1.20 W |
C. | 1.18 W |
D. | 0.96 W |
Answer» D. 0.96 W | |
6. |
A single-mode optical fiber has an attenuation of 0.3dB/km when operating at wavelength of 1.1μm. The fiber core diameter is 4μm and bandwidth is 500 MHz. Find threshold optical power for stimulated Brillouin scattering. |
A. | 11.20 mw |
B. | 12.77 mw |
C. | 13.08 mw |
D. | 12.12 mw |
Answer» C. 13.08 mw | |
7. |
The phonon is a quantum of an elastic wave in a crystal lattice. |
A. | True |
B. | False |
Answer» B. False | |
8. |
Raman and Brillouin scattering are usually observed at ___________ |
A. | Low optical power densities |
B. | Medium optical power densities |
C. | High optical power densities |
D. | Threshold power densities |
Answer» D. Threshold power densities | |
9. |
The in-homogeneities in Mie scattering can be reduced by coating of a fiber. |
A. | True |
B. | False |
Answer» B. False | |
10. |
Mie scattering has in-homogeneities mainly in ___________ |
A. | Forward direction |
B. | Backward direction |
C. | All direction |
D. | Core-cladding interface |
Answer» B. Backward direction | |
11. |
The scattering resulting from fiber imperfections like core-cladding RI differences, diameter fluctuations, strains, and bubbles is? |
A. | Rayleigh scattering |
B. | Mie scattering |
C. | Stimulated Brillouin scattering |
D. | Stimulated Raman scattering |
Answer» C. Stimulated Brillouin scattering | |
12. |
Rayleigh scattering can be reduced by operating at smallest possible wavelengths. |
A. | True |
B. | False |
Answer» C. | |
13. |
Dominant intrinsic loss mechanism in low absorption window between ultraviolet and infrared absorption tails is ___________ |
A. | Mie scattering |
B. | Rayleigh scattering |
C. | Stimulated Raman scattering |
D. | Stimulated Brillouin scattering |
Answer» C. Stimulated Raman scattering | |
14. |
Rayleigh scattering and Mie scattering are the types of _____________ |
A. | Linear scattering losses |
B. | Non-linear scattering losses |
C. | Fiber bends losses |
D. | Splicing losses |
Answer» B. Non-linear scattering losses | |
15. |
A_SINGLE-MODE_OPTICAL_FIBER_HAS_AN_ATTENUATION_OF_0.3DB/KM_WHEN_OPERATING_AT_WAVELENGTH_OF_1.1‚ÂÀ√≠¬¨‚À´M._THE_FIBER_CORE_DIAMETER_IS_4‚ÂÀ√≠¬¨‚À´MAND_BANDWIDTH_IS_500_MHZ._FIND_THRESHOLD_OPTICAL_POWER_FOR_STIMULATED_BRILLOUIN_SCATTERING.?$# |
A. | 11.20 mw |
B. | 12.77 mw |
C. | 13.08 mw |
D. | 12.12 mw |
Answer» C. 13.08 mw | |
16. |
Stimulated Brillouin scattering is mainly a$ |
A. | Forward process |
B. | Backward process |
C. | Upward process |
D. | Downward process |
Answer» C. Upward process | |
17. |
0.4_dB/km,_1.4μm,_6μm,_550MHz._Find_threshold_optical_power_for_stimulated_Raman_scattering.$# |
A. | 1.98 W |
B. | 1.20 W |
C. | 1.18 W |
D. | 0.96 W |
Answer» D. 0.96 W | |
18. |
Stimulated Raman scattering may have an optical power threshold of may be three orders of magnitude |
A. | Lower than Brillouin threshold |
B. | Higher than Brillouin threshold |
C. | Same as Brillouin threshold |
D. | Higher than Rayleigh threshold |
Answer» C. Same as Brillouin threshold | |
19. |
Stimulated Raman scattering occur in |
A. | Forward direction |
B. | Backward direction |
C. | Upward direction |
D. | Forward and backward direction |
Answer» E. | |
20. |
High frequency optical phonon is generated in stimulated Raman scattering. State true or false |
A. | False |
B. | True |
Answer» C. | |
21. |
The phonon is a quantum of an elastic wave in a crystal lattice. State whether the given statement is true or false? |
A. | True |
B. | False |
Answer» B. False | |
22. |
Raman and Brillouin scattering are usually observed at |
A. | Low optical power densities |
B. | Medium optical power densities |
C. | High optical power densities |
D. | Threshold power densities |
Answer» D. Threshold power densities | |
23. |
The in-homogeneities in Mie scattering can be reduced by coating of a fiber. State whether the following statement is true or false. |
A. | True |
B. | False |
Answer» B. False | |
24. |
Mie scattering has in-homogeneities mainly in |
A. | Forward direction |
B. | Backward direction |
C. | All direction |
D. | Core-cladding interface |
Answer» B. Backward direction | |
25. |
The scattering resulting from fiber imperfections like core-cladding RI differences, diameter fluctuations, strains, and bubbles is |
A. | Rayleigh scattering |
B. | Mie scattering |
C. | Stimulated Brillouin scattering |
D. | Stimulated Raman scattering |
Answer» C. Stimulated Brillouin scattering | |
26. |
Rayleigh scattering can be reduced by operating at smallest possible wavelengths. State whether the following statement is true or false. |
A. | True |
B. | False |
Answer» C. | |
27. |
Dominant intrinsic loss mechanism in low absorption window between ultraviolet and infrared absorption tails is |
A. | Mie scattering |
B. | Rayleigh scattering |
C. | Stimulated Raman scattering |
D. | Stimulated Brillouin scattering |
Answer» C. Stimulated Raman scattering | |
28. |
Rayleigh scattering and Mie scattering are the types of |
A. | Linear scattering losses |
B. | Non-linear scattering losses |
C. | Fiber bends losses |
D. | Splicing losses |
Answer» B. Non-linear scattering losses | |