Bogoliubov-Cherenkov radiation in an atom laser

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Abstract

We develop a simple yet powerful technique to study Bogoliubov-Cherenkov radiation by producing a pulsed atom laser from a strongly confined Bose-Einstein condensate. Such radiation results when the atom laser pulse falls past a Bose-Einstein condensate at high-hypersonic speeds, modifying the spatial profile to display a characteristic twin jet structure and a complicated interference pattern. The experimental observations are in excellent agreement with mean-field numerical simulations and an analytic theory. Due to the highly hypersonic regime reached in our experiment, this system offers a highly controllable platform for future studies of condensed-matter analogs of quantum electrodynamics at ultrarelativistic speeds.

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Henson, B. M., Yue, X., Hodgman, S. S., Shin, D. K., Smirnov, L. A., Ostrovskaya, E. A., … Truscott, A. G. (2018). Bogoliubov-Cherenkov radiation in an atom laser. Physical Review A, 97(6). https://doi.org/10.1103/PhysRevA.97.063601

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