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Transmission of metal wire mesh
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0.4°K bolometer absorption coefficient alloy amplifier noise anomalous skin effect approximation attenuation coefficient BCS theory beam boundary conditions calculated constant cooled bolometer coupling hole cryostat current noise diameter dielectric direct absorption electron energy gap equation estimated etched Pb extreme anomalous limit factor FIGURE foil frequency dependence gap frequency germanium given by Eq high frequency high purity index of refraction infrared radiation intensity interferogram interferometer Johnson noise light pipe line geometry low frequency magnetic field maximum mean free path metal surface noise power noise sources normal state surface observed obtained parameters Pb samples photon noise polyethylene polyethylene spacers power absorbed pure Pb resistor Rn-Rs room temperature sample chamber seen sensitivity shown in Fig skin depth skin effect slope spacer thickness spectra structure superconducting surface impedance surface resistance Table thermal Tinkham tion transmission line samples transmission ratios watts zero