Abstract:
We consider the effect of the nematic order on the formation of the superconducting state in iron pnictides and chalcogenides. Nematic order with the ${{B}_{{2g}}}$ symmetry is modelled as the $d$-type Pomeranchuk instability and treated within the mean-field approach. Calculated nematic order parameter depends on the nematic interaction coefficient and abruptly changes with the coefficient's increase. The superconducting solution is obtained within the spin-fluctuation pairing theory. We show that the leading solution in the nematic phase has a ${{s}_{{\pi \pm }}}$ structure. From the critical temperature ${{T}_{c}}$ estimations, we conclude that the nematic superconducting state of the ${{s}_{{\pi \pm }}}$ type is more favorable than the usual ${{s}_{ \pm }}$ and ${{d}_{{{{x}^{2}} - {{y}^{2}}}}}$ type states appearing in the absence of the nematicity.
Citation:
M. M. Korshunov, Yu. N. Togushova, “Superconducting order parameter structure in the nematic phase of iron-based materials”, Pis'ma v Zh. Èksper. Teoret. Fiz., 119:4 (2024), 302–307; JETP Letters, 119:4 (2024), 310–315
\Bibitem{KorTog24}
\by M.~M.~Korshunov, Yu.~N.~Togushova
\paper Superconducting order parameter structure in the nematic phase of iron-based materials
\jour Pis'ma v Zh. \`Eksper. Teoret. Fiz.
\yr 2024
\vol 119
\issue 4
\pages 302--307
\mathnet{http://mi.mathnet.ru/jetpl7162}
\crossref{https://doi.org/10.31857/S1234567824040098}
\edn{https://elibrary.ru/szsbyl}
\transl
\jour JETP Letters
\yr 2024
\vol 119
\issue 4
\pages 310--315
\crossref{https://doi.org/10.1134/S0021364024600046}
Linking options:
https://www.mathnet.ru/eng/jetpl7162
https://www.mathnet.ru/eng/jetpl/v119/i4/p302
This publication is cited in the following 1 articles:
T. E. Kuzmicheva, Yu. A. Aleshchenko, P. I. Bezotosnyi, S. Yu. Gavrilkin, K. A. Dmitrieva, A. D. Ilina, S. A. Kuzmichev, A. V. Muratov, I. A. Nikitchenkov, G. V. Rybalchenko, Jetp Lett., 2025