Question

Beat length of a single mode optical fiber is 0.6 cm. Calculate the difference between propagation constants for the orthogonal modes.

a.

69.8

b.

99.86

c.

73.2

d.

104.66

Posted under Optical Communication

Answer: (d).104.66

Interact with the Community - Share Your Thoughts

Uncertain About the Answer? Seek Clarification Here.

Understand the Explanation? Include it Here.

Q. Beat length of a single mode optical fiber is 0.6 cm. Calculate the difference between propagation constants for the orthogonal modes.

Similar Questions

Explore Relevant Multiple Choice Questions (MCQs)

Q. A polarization maintaining fiber operates at a wavelength 1.2 μm and have a modal birefringence of 1.8*10⁻³. Calculate the period of perturbation.

Q. When two components are equally excited at the fiber input, then for polarization maintaining fibers δΓg should be around ___________

Q. Polarization modal noise can _________ the performance of communication system.

Q. The nonlinear effects in optical fibers are large.

Q. How many categories of nonlinear effects are seen in optical fibers?

Q. Which of the following is not related to Kerr effects?

Q. Linear scattering effects are _______ in nature.

Q. Which thing is more dominant in making a fiber function as a bidirectional optical amplifier?

Q. _________ semiconductor laser sources generally have broader bandwidths.

Q. Nonlinear effects which are defined by the intensity – dependent refractive index of the fiber are called as ________

Q. Self-phase modulation causes modifications to the pulse spectrum.

Q. Self-phase modulation can be used for _____________

Q. The beating between light at different frequencies or wavelengths in multichannel fiber transmission causes ________

Q. What is different in case of cross-phase modulation from self-phase modulation?

Q. When three wave components co-propagate at angular frequency w1, w2, w3, then a new wave is generated at frequency w4, which is given by?

Q. _____________ results from a case of nonlinear dispersion compensation in which the nonlinear dispersion compensation in which the nonlinear chirp caused by self-phase modulation balances, postpones, the temporal broadening induced by group velocity delay.

Recommended Subjects

Are you eager to expand your knowledge beyond Optical Communication? We've handpicked a range of related categories that you might find intriguing.

Click on the categories below to discover a wealth of MCQs and enrich your understanding of various subjects. Happy exploring!