Odd entanglement entropy and logarithmic negativity for thermofield double states

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Abstract

We investigate the time evolution of odd entanglement entropy (OEE) and logarithmic negativity (LN) for the thermofield double (TFD) states in free scalar quantum field theories using the covariance matrix approach. To have mixed states, we choose non-complementary subsystems, either adjacent or disjoint intervals on each side of the TFD. We find that the time evolution pattern of OEE is a linear growth followed by saturation. On a circular lattice, for longer times the finite size effect demonstrates itself as oscillatory behavior. In the limit of vanishing mass, for a subsystem containing a single degree of freedom on each side of the TFD, we analytically find the effect of zero-mode on the time evolution of OEE which leads to logarithmic growth in the intermediate times. Moreover, for adjacent intervals we find that the LN is zero for times t

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Ghasemi, M., Naseh, A., & Pirmoradian, R. (2021). Odd entanglement entropy and logarithmic negativity for thermofield double states. Journal of High Energy Physics, 2021(10). https://doi.org/10.1007/JHEP10(2021)128

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