Abstract

The complex dielectric constant of bubble-free ice grown from deionized water was determined at 1.8 GHz using an interference technique. The interference pattern was produced by measuring the reflected signals from bubble-free ice slabs of varying thickness at normal incident angle. The wavelength and loss factor in the bubble-free ice samples were obtained from the resulting interference pattern. The real and imaginary components of the dielectric constant were determined to be 3.17 and 0.003, respectively.

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