The relative number of quantum-correlated pairs from Floquet-Kulik quartet levels equals the inverse channel number, motivating a continuum adiabatic model for nonequilibrium Andreev modes that predicts voltage scales governing mesoscopic critical current oscillations in multiterminal Josephson jun
We specifically cal- culate the corresponding quartet current as a function of both the quartet phase and the bias voltage
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Revisiting the adiabatic limit in ballistic multiterminal Josephson junctions
The relative number of quantum-correlated pairs from Floquet-Kulik quartet levels equals the inverse channel number, motivating a continuum adiabatic model for nonequilibrium Andreev modes that predicts voltage scales governing mesoscopic critical current oscillations in multiterminal Josephson jun