General relativistic electromagnetic effects in transmission-line gyroscopes

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Coaxial Cables, Electromagnetic Interactions, Gravitational Fields, Gyroscopes, Ring Lasers, Transmission Lines, Angular Momentum, Electromagnetic Radiation, Relativistic Effects, Wave Functions

Scientific paper

A closed loop of parallel-wire or coaxial transmission line is shown to be a suitable system for observing the interaction of an electromagnetic field with certain types of general relativistic field. Such a device constitutes a transmission-line gyroscope and, in common with other forms of ring gyroscope, may be conveniently analyzed by the method of conjugate functions. When operated resonantly with a propagating electromagnetic field, the transmission-line gyroscope represents a generalized form of ring-laser device in which photon number as well as phase effects are observable.

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