5 papers
Reply to "Comment on "Electric conductivity in graphene: Kubo model versus a nonlocal quantum field theory model"" (ArXiv:2506.10792v2)
Pablo Rodriguez-Lopez, Jian-Sheng Wang, Mauro Antezza
In the Comment by Bordag et al. [Phys. Rev. B 113, 207401 (2026) and ArXiv:2506.10792], concerns are raised regarding the validity of the results presented in [Phys. Rev. B 111, 11…
Can Intense Quantum Light Beat Classical Uncertainty Relations?
Felipe Reibnitz Willemann, Mauro Antezza, Johannes Feist
Uncertainty relations are fundamental to quantum mechanics, encoding limits on the simultaneous measurement of conjugate observables. Violations of joint uncertainty bounds can cer…
Casimir radiation with Weyl semimetals
Yang Hu, Xiaohu Wu, Haotuo Liu +2
When Casimir friction torque acts upon a rotated nanoparticle (NP), mechanical energy can be transformed into thermal energy, known as Casimir radiation, which significantly affect…
Casimir-Lifshitz force with graphene: theory versus experiment, role of spatial non-locality and of losses
Pablo Rodriguez-Lopez, Mauro Antezza
We analyze the impact of spatial non-locality and losses in the electromagnetic response of graphene on the Casimir-Lifshitz interaction. To this purpose, we calculate the Casimir-…
Electric conductivity in graphene: Kubo model versus a nonlocal quantum field theory model
Pablo Rodriguez-Lopez, Jian-Sheng Wang, Mauro Antezza
We compare three models of graphene electric conductivity: a non-local Kubo model, a local model derived by Falkovsky, and finally, a non-local quantum field theory (QFT) polarizat…