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Direct detection of down-converted photons spontaneously produced at a single Josephson junction
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We study spontaneous photon decay into multiple photons triggered by strong non-linearities in a superconducting quantum simulator of the boundary sine-Gordon impurity model. Previously, spectroscopic signatures of photon-conversion were reported and evidenced as resonances in the many-body spectrum of these systems. Here, we report on the observation of multi-mode fluorescence of a small Josephson junction embedded in a high impedance superconducting transmission line. Measurement of the down-converted photons is achieved using state-of-the-art broadband parametric amplifiers. Photon triplet emission is explicitly demonstrated at a given frequency as the counterpart of inelastic photon decay at three-times the emission frequency. These results open exciting prospects for the burgeoning field of many-body quantum optics and offer a direct signature of the ultra-strong light-matter coupling.
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Theory of the photonic Joule effect in superconducting circuits
A voltage-biased Josephson junction can drive its long Josephson-junction-chain photonic bath into a strongly overheated, non-equilibrium steady state, producing a bistable I-V curve.
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