A linearly polarized wave with the vacuum wavelength $\lambda_0$ falls perpendicular on a material with the complex refractive index $\bar{n}=1.5+i\cdot 0.15$ with that wavelength.
After what distance does the intensity fall to $1/e$th of the original value?
I'm going through all the exercises I can find in my textbook as a preparation for my upcoming exam and I'm stuck on this one for now. I tried looking up all the possible chapters connected to this problem but I can't seem to come up with an approach on solving this.
I hope someone could me out here. Or am I missing something and there is actually a general way of solving this type of problem?