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Symmetry of superconducting states with two orbitals on a tetragonal lattice: application to $LaO_{1-x}F_{x}FeAs$

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arxiv 0806.0712 v3 pith:NDPYKV67 submitted 2008-06-04 cond-mat.supr-con

classification cond-mat.supr-con
keywords orbitalspinanti-symmetricorbitalsstatesuperconductingapplicationeven
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We use group theory to classify the superconducting states of systems with two orbitals on a tetragonal lattice. The orbital part of the superconducting gap function can be either symmetric or anti-symmetric. For the orbital symmetric state, the parity is even for spin singlet and odd for spin triplet; for the orbital anti-symmetric state, the parity is odd for spin singlet and even for spin triplet. The gap basis functions are obtained with the use of the group chain scheme by taking into account the spin-orbit coupling. In the weak pairing limit, the orbital anti-symmetric state is only stable for the degenerate orbitals. Possible application to iron-based superconductivity is discussed.

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  1. Phase-Space Approach to Wannier Pairing and Bogoliubov Orbitals in Square-Octagon Lattices

    cond-mat.supr-con 2024-12 reject novelty 3.0 of 10

    A reformulation of tight-binding models that shifts orbital symmetry into Bloch phase factors is applied to predict coexisting s± and s_z2 pairing in Lu2Fe3Si5, but the framework reduces to standard tight-binding and ...

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