Consider the geometry shown in the figure. The upper right quadrant is filled with a medium with a refractive index V3 and the rest of space is vacuum. A plane wave is incident on the xy plane from the left with an incident angle "1=1 of 60 degrees. Its electric field is linearly polarized along the y direction. Find the power reflection and transmission coeffi- cients at the ry plane and at the yz plane, respectively. What if the electric field is polarized in the xz plane? n2 = N2 = V3
Consider the geometry shown in the figure. The upper right quadrant is filled with a medium with a refractive index V3 and the rest of space is vacuum. A plane wave is incident on the xy plane from the left with an incident angle "1=1 of 60 degrees. Its electric field is linearly polarized along the y direction. Find the power reflection and transmission coeffi- cients at the ry plane and at the yz plane, respectively. What if the electric field is polarized in the xz plane? n2 = N2 = V3
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right quadrant is filled with a medium with a refractive index
V3 and the rest of space is vacuum. A plane wave is
n2 =
incident on the xy plane from the left with an incident angle "1 =
of 60 degrees. Its electric field is linearly polarized along the
y direction. Find the power reflection and transmission coeffi-
cients at the ryY plane and at the yz plane, respectively. What
if the electric field is polarized in the xz plane?
n2 = V3
y O"
Transcribed Image Text:Consider the geometry shown in the figure. The upper
right quadrant is filled with a medium with a refractive index
V3 and the rest of space is vacuum. A plane wave is
n2 =
incident on the xy plane from the left with an incident angle "1 =
of 60 degrees. Its electric field is linearly polarized along the
y direction. Find the power reflection and transmission coeffi-
cients at the ryY plane and at the yz plane, respectively. What
if the electric field is polarized in the xz plane?
n2 = V3
y O
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