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      Space-time uncertainty relation and Lorentz invariance

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          Abstract

          We discuss a Lorentz covariant space-time uncertainty relation, which agrees with that of Karolyhazy-Ng-van Dam when an observational time period delta t is larger than the Planck time lp. At delta t < lp, this uncertainty relation takes roughly the form delta t delta x > lp^2, which can be derived from the condition prohibiting the multi-production of probes to a geometry. We show that there exists a minimal area rather than a minimal length in the four-dimensional case. We study also a three-dimensional free field theory on a non-commutative space-time realizing the uncertainty relation. We derive the algebra among the coordinate and momentum operators and define a positive-definite norm of the representation space. In four-dimensional space-time, the Jacobi identity should be violated in the algebraic representation of the uncertainty relation.

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          Quantized Space-Time

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            Quantum Limitations of the Measurement of Space-Time Distances

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              Wigner inequalities for a black hole

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                Author and article information

                Journal
                25 January 2000
                2000-01-27
                Article
                10.1088/1126-6708/2000/05/015
                hep-th/0001161
                38d4533d-50b0-41e1-ae3f-03d2e6e9174a
                History
                Custom metadata
                KUNS-1630
                JHEP 0005 (2000) 015
                13 pages, LaTeX. References added, minor corrections, a statement deleted in summary
                hep-th gr-qc

                General relativity & Quantum cosmology,High energy & Particle physics
                General relativity & Quantum cosmology, High energy & Particle physics

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