Exploring the origin of Minkowski spacetime
James M. Chappell, John G. Hartnett, Nicolangelo Iannella, Azhar Iqbal, Derek Abbott
Abstract
James M. Chappell, John G. Hartnett, Nicolangelo Iannella, Azhar Iqbal, Derek Abbott
Abstract
Following Minkowski's formulation of special relativity, it is generally accepted that we live in a four-dimensional world consisting of three space and one time dimension. Due to its fundamental importance, a variety of arguments have been proposed over the years attempting to derive this spacetime structure from underlying physical principles. In our approach, we show how Minkowski spacetime arises from the geometrical properties of three dimensional space. We demonstrate this through modeling physical space with Clifford's geometric algebra of three dimensions. We indeed find using this representation that a time-like dimension arises naturally within this space but also extends spacetime to eight dimensions through incorporating four spin degrees of freedom. This expanded arena of spacetime produces a generalized group of Lorentz transformations and provides a natural description of fundamental particles. Nearly all standard results are returned in this expanded structure and so its main achievement is that it provides an efficient alternative formalism to the conventional four-vector formalism but we were also able to identify several areas where new physics may be indicated.
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Following Minkowski's formulation of special relativity, it is generally accepted that we live in a four-dimensional world consisting of three space and one time dimension. Due to its fundamental importance, a variety of arguments have been proposed over the years attempting to derive this spacetime structure from underlying physical principles. In our approach, we show how Minkowski spacetime arises from the geometrical properties of three dimensional space. We demonstrate this through modeling physical space with Clifford's geometric algebra of three dimensions. We indeed find using this representation that a time-like dimension arises naturally within this space but also extends spacetime to eight dimensions through incorporating four spin degrees of freedom. This expanded arena of spacetime produces a generalized group of Lorentz transformations and provides a natural description of fundamental particles. Nearly all standard results are returned in this expanded structure and so its main achievement is that it provides an efficient alternative formalism to the conventional four-vector formalism but we were also able to identify several areas where new physics may be indicated.
Key concepts: Minkowski space, Spacetime, World line, Theoretical physics, Lorentz transformation, Formalism (music), Theory of relativity, Spacetime topology