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Nature Research, Scientific Reports, 1(6), 2016

DOI: 10.1038/srep21547

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Exploring structural phase transitions of ion crystals

Journal article published in 2016 by L. L. Yan, W. Wan, L. Chen ORCID, F. Zhou, S. J. Gong, X. Tong, M. Feng
This paper is made freely available by the publisher.
This paper is made freely available by the publisher.

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Abstract

AbstractPhase transitions have been a research focus in many-body physics over past decades. Cold ions, under strong Coulomb repulsion, provide a repealing paradigm of exploring phase transitions in stable confinement by electromagnetic field. We demonstrate various conformations of up to sixteen laser-cooled 40Ca+ ion crystals in a home-built surface-electrode trap, where besides the usually mentioned structural phase transition from the linear to the zigzag, two additional phase transitions to more complicated two-dimensional configurations are identified. The experimental observation agrees well with the numerical simulation. Heating due to micromotion of the ions is analysed by comparison of the numerical simulation with the experimental observation. Our investigation implies very rich and complicated many-body behaviour in the trapped-ion systems and provides effective mechanism for further exploring quantum phase transitions and quantum information processing with ultracold trapped ions.