Measurability analysis of the linearized gravitational field

Physics

Scientific paper

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Electromagnetic Measurement, Field Theory (Physics), Gravitational Fields, Linearization, Quantum Electrodynamics, Particle Motion, Relativity, Space-Time Functions, Tensor Analysis, Theoretical Physics, Wave Packets

Scientific paper

The measurability analysis of quantum electrodynamics performed by Bohr and Rosenfeld is generalized in order to be applicable to gravitation. After briefly restating an earlier argument for the measurability of the components of the quantum linearized Weyl tensor field taken separately, their measurability when taken jointly is demonstrated in detail. In comparing the measurability analysis of linearized gravitation with that of quantum electrodynamics, it is possible to exhibit the pervasive differences between the analyses necessitated by the equivalence principle.

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