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The quantitative description of the quantum entanglement between a qubit and its environment is considered. Specifically, for the ground state of the spin-boson model, the entropy of entanglement of the spin is calculated as a function of, the strength of the ohmic coupling to the environment, and, the level asymmetry. This is done by a numerical renormalization group treatment of the related anisotropic Kondo model. For =0, the entanglement increases monotonically with, until it becomes maximal for 1^-. For fixed >0, the entanglement is a maximum as a function of for a value, =₌<1.
Costi et al. (Fri,) studied this question.
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