Paired composite fermion phase of quantum Hall bilayers at = 1/2 + 1/2

Abstract

We provide numerical evidence for composite fermion pairing in quantum Hall bilayer systems at filling =1/2 + 1/2 for intermediate spacing between the layers. We identify the phase as px + i py pairing, and construct high accuracy trial wavefunctions to describe the groundstate on the sphere. For large distances between the layers, and for finite systems, a competing "Hund's rule" state, or composite fermion liquid, prevails for certain system sizes. We argue that for larger systems, the pairing phase will persist to larger layer spacing.

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