Light fields can induce controllable time-dependent temperatures in electrodes to generate and detect charge-neutral heat pulses in mesoscopic conductors.
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Multiple parametric pumps in Josephson circuits reduce bipartite entanglement by redistributing two-mode squeezing across a larger network of modes and additional idler frequencies.
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Generation of heat pulses in mesoscopic conductors using light fields
Light fields can induce controllable time-dependent temperatures in electrodes to generate and detect charge-neutral heat pulses in mesoscopic conductors.
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Bipartite entanglement under frequency comb pumping in parametric Josephson circuits
Multiple parametric pumps in Josephson circuits reduce bipartite entanglement by redistributing two-mode squeezing across a larger network of modes and additional idler frequencies.