Microwave control of the superconducting proximity effect and minigap in magnetic and normal metals

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Jacob Linder
Morten Amundsen
Jabir Ali Ouassou
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[1] NTNU,Department of Physics
[2] Norwegian University of Science and Technology,undefined
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We demonstrate theoretically that microwave radiation applied to superconducting proximity structures controls the minigap and other spectral features in the density of states of normal and magnetic metals, respectively. Considering both a bilayer and Josephson junction geometry, we show that microwaves with frequency ω qualitatively alters the spectral properties of the system: inducing a series of resonances, controlling the minigap size Emg, and even replacing the minigap with a strong peak of quasiparticle accumulation at zero energy when ω = Emg. The interaction between light and Cooper pairs may thus open a route to active control of quantum coherent phenomena in superconducting proximity structures.
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