2000 character limit reached
Topological phase transitions with and without energy gap closing
Published 8 Jan 2013 in cond-mat.mes-hall and cond-mat.str-el | (1301.1618v1)
Abstract: Topological phase transitions in a three-dimensional (3D) topological insulator (TI) with an exchange field of strength are studied by calculating spin Chern numbers with momentum as a parameter. When exceeds a critical value , a transition of the 3D TI into a Weyl semimetal occurs, where two Weyl points appear as critical points separating regions with different first Chern numbers. For $|g|<g_c$, undergo a transition from to 0 with increasing to a critical value . Correspondingly, surface states exist for $|k_z| < k_z<sup>{\tiny</sup> C}$, and vanish for . The transition at is acompanied by closing of spin spectrum gap rather than energy gap.
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