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Published on: August 17, 2017
Experimental realization of Lieb-Mattis plateau in a quantum spin chain
Hironori Yamaguchi1, Taiki Okita2, Yoshiki Iwasaki2
1Department of Physical Science, Osaka Prefecture University, Osaka, 599-8531, Japan. yamaguchi@p.s.osakafu-u.ac.jp.
Abstract:
Topological properties in material science have recently received tremendous attention, as exemplified by topological insulators. As for quantum spin systems, the Haldane chain with integer spins is the best known example1. The realization of a topological quantum phase in the Haldane chain is an innovative research development related to the 2016 Nobel Prize in Physics. For mixed spin chains composed of two different spins, the appearance of a topologically quantized magnetization plateau is predicted by the Lieb-Mattis theorem2 in combination with the Oshikawa-Yamanaka-Affleck criterion3. However, the actual magnetization plateau in the mixed spin chain has not yet been observed. Here, we present a model compound forming a mixed spin-(1/2, 5/2) chain. We observe a clear Lieb-Mattis plateau and well explain it quantitatively. The present results demonstrate a quantum many-body effect based on quantum topology and provide a new stage in the search for topological properties in condensed matter physics.
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