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Minimum coupling loss.
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The fundamental performance of the conductors designed using our method has been confirmed through measurements of the coupling loss and the minimum quench energies in the conductor.
The minimum insertion loss including the transmission loss and coupling loss is about 10.7 dB.
And the coupling loss is insensitive to tilt angle.
This situation induces substantial polarization dependent loss and a large fiber coupling loss for TM wave.
Therefore, we take the minimum coupling coefficient to be D/(T ∙ v0).
Comparisons are drawn between the transient coupling loss factors and the steady-state coupling loss factor of classical SEA.
In the high modal overlap limit the coupling loss factors asymptote to constants, with indirect coupling loss factors becoming zero.
Depending on the frequency range, coupling loss becomes less significant above 15 dB coupling where the other losses constitute the majority of the total loss.
In a real directional coupler, however, the insertion loss consists of a combination of coupling loss, dielectric loss, conductor loss, and VSWR loss.
P back and P base are radiation losses that constitute part of the coupling loss; the power coupled into the shanks is P coupled.
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