Transformation properties and entanglement of relativistic qubits under space-time and gauge transformations

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Abstract

We revisit the properties of qubits under Lorentz transformations and, by considering Lorentz-invariant quantum states in the Heisenberg formulation, clarify some misleading notation that has appeared in the literature on relativistic quantum information theory. We then use this formulation to consider the transformation properties of qubits and density matrices under space-time and gauge transformations. Finally, we use our results to understand the behavior of entanglement between different partitions of quantum systems. Our approach not only clarifies the notation but provides a more intuitive and simple way of gaining insight into the behavior of relativistic qubits. In particular, it allows us to greatly generalize the results in the current literature, as well as substantially simplifying the calculations that are needed.

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APA

Calmet, X., & Dunningham, J. (2017). Transformation properties and entanglement of relativistic qubits under space-time and gauge transformations. Physical Review A, 95(4). https://doi.org/10.1103/PhysRevA.95.042309

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