arXiv · 2204.12989
Parametric control of Meissner screening in light-driven superconductors
Abstract
We investigate the Meissner effect in a parametrically driven superconductor using a semiclassical $U(1)$ lattice gauge theory. Specifically, we periodically drive the $z$-axis tunneling, which leads to an enhancement of the imaginary part of the $z$-axis conductivity at low frequencies if the driving frequency is blue-detuned from the plasma frequency. This has been proposed as a possible mechanism for light-enhanced interlayer transport in YBa$_2$C$_3$O$_{7-\delta}$ (YBCO). In contrast to this enhancement of the conductivity, we find that the screening of magnetic fields is less effective than in equilibrium for blue-detuned driving, while it displays a tendency to be enhanced for red-detuned driving.
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Guido Homann, Jayson G. Cosme, Ludwig Mathey. 2022-04-27. Parametric control of Meissner screening in light-driven superconductors. https://doi.org/10.1088/1367-2630%2Fac9b83
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