Superfluid-insulator transition of two-dimensional disordered Bose gases

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Abstract

We study the two-dimensional weakly repulsive Bose gas at zero temperature in the presence of correlated disorder. Using large-scale simulations, we show that the low-energy Bogoliubov cumulative density of states remains quadratic up to a critical disorder strength, beyond which a power law with disorder-dependent exponent β<2 sets in. We associate this threshold behavior with the transition from superfluid to Bose glass, and compare the resulting mean-field phase diagram with scaling laws and the Thomas-Fermi percolation threshold of the mean-field density profile.

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Saliba, J., Lugan, P., & Savona, V. (2014). Superfluid-insulator transition of two-dimensional disordered Bose gases. Physical Review A - Atomic, Molecular, and Optical Physics, 90(3). https://doi.org/10.1103/PhysRevA.90.031603

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