TY - JOUR
T1 - Subsystem complexity in warped AdS
AU - Auzzi, Roberto
AU - Baiguera, Stefano
AU - Mitra, Arpita
AU - Nardelli, Giuseppe
AU - Zenoni, Nicolo'
PY - 2019
Y1 - 2019
N2 - We compute the ultraviolet divergences of holographic subregion complexity for the left and right factors of the thermofield double state in warped AdS3 black holes, both for the action and the volume conjectures. Besides the linear divergences, which are also present in the BTZ black hole, additional logarithmic divergences appear. For the action conjecture, these log divergences are not affected by the arbitrarity in the length scale associated with the counterterm needed to ensure reparameterization invariance. We find that the subregion action complexity obeys the superadditivity property for the thermofield double in warped AdS3, independently from the action counterterm coefficient. We study the temperature dependence of subregion complexity at constant angular momentum and we find that it is correlated with the sign of the specific heat.
AB - We compute the ultraviolet divergences of holographic subregion complexity for the left and right factors of the thermofield double state in warped AdS3 black holes, both for the action and the volume conjectures. Besides the linear divergences, which are also present in the BTZ black hole, additional logarithmic divergences appear. For the action conjecture, these log divergences are not affected by the arbitrarity in the length scale associated with the counterterm needed to ensure reparameterization invariance. We find that the subregion action complexity obeys the superadditivity property for the thermofield double in warped AdS3, independently from the action counterterm coefficient. We study the temperature dependence of subregion complexity at constant angular momentum and we find that it is correlated with the sign of the specific heat.
KW - AdS/CFT correspondence
KW - AdS/CFT correspondence
UR - http://hdl.handle.net/10807/146060
U2 - 10.1007/JHEP09(2019)114
DO - 10.1007/JHEP09(2019)114
M3 - Article
SN - 1029-8479
SP - 0
EP - 28
JO - Journal of High Energy Physics
JF - Journal of High Energy Physics
ER -