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Conformal symmetry and quantum localization in space-time

机译:时空中的共形对称性和量子定位

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The classical procedures which define the relativistic notion of space-time can be implemented in the framework of Quantum Field Theory. Only relying on the conformal symmetries of field propagation, time-frequency transfer and localization lead to the definition of time-frequency references and positions in space-time as quantum observables. Quantum positions have a non vanishing commutator identifying with spin, both observables characterizing quantum localization in space-time. Frame transformations to accelerated frames differ from their classical counterparts. Conformal symmetry nevertheless allows to extend the covariance rules underlying the formalism of general relativity under an algebraic form suiting the quantum framework.
机译:定义空间时间相对论的经典过程可以在量子场理论的框架中实现。仅依赖于字段传播的共形对称,时频传输和定位导致时间频率参考的定义和时空中的位置作为量子观察到。量子位置具有旋转旋转的非消失换向器,这两个可观察到的空间时间在时空地位。加速帧的帧变换与其经典的对应物不同。然而,保形对称性允许在适用量子框架的代数形式下延长一般相对性的形式主义的协方差规则。

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