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Symmetry  2012 

One-Sign Order Parameter in Iron Based Superconductor

DOI: 10.3390/sym4010251

Keywords: iron-based superconductors, ARPES, LiFeAs, order parameter

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Abstract:

The onset of superconductivity at the transition temperature is marked by the onset of order, which is characterized by an energy gap. Most models of the iron-based superconductors find a sign-changing (s±) order parameter [1–6], with the physical implication that pairing is driven by spin fluctuations. Recent work, however, has indicated that LiFeAs has a simple isotropic order parameter [7–9] and spin fluctuations are not necessary [7,10], contrary to the models [1–6]. The strength of the spin fluctuations has been controversial [11,12], meaning that the mechanism of superconductivity cannot as yet be determined. We report the momentum dependence of the superconducting energy gap, where we find an anisotropy that rules out coupling through spin fluctuations and the sign change. The results instead suggest that orbital fluctuations assisted by phonons [13,14] are the best explanation for superconductivity.

References

[1]  Hirschfeld, P.J.; Korshunov, M.M.; Mazin, I.I. Gap symmetry and structure of Fe-based superconductors. Rep. Prog. Phys. 2011, 74, 124508:1–44.
[2]  Chubukov, A.V. Pairing mechanism in Fe-based superconductors. 2011. Available online: http://arxiv.org/pdf/1110.0052v1.pdf (accessed on 20 March 2012). Unpublished.
[3]  Eremin, I.; Chubukov, A.V. Magnetic degeneracy and hidden metallicity of the spin-density-wave state in ferropnictides. Phys. Rev. B 2010, 81, 024511:1–14.
[4]  Graser, S.; Maier, T.A.; Hirschfeld, P.J.; Scalapino, D.J. Near-degeneracy of several pairing channels in multiorbital models for the Fe pnictides. New J. Phys. 2009, 11, 02501.
[5]  Thomale, R.; Platt, C.; Hu, J.; Honerkamp, C.; Andrei Bernevig, B. Doping-dependent pairing symmetry in the iron-pnictides. Phys. Rev. B , 80, 180505:1–4.
[6]  Kuroki, K.; Onari, S.; Arita, R.; Usui, H.; Tanaka, Y.; Kontani, H.; Aoki, H. Unconventional pairing originating from the disconnected fermi surfaces of superconducting LaFeAsO1-xFx. Phys. Rev. Lett. 2008, 101, 087004, doi:10.1103/PhysRevLett.101.087004. 18764652
[7]  Borisenko, S.V.; Zabolotnyy, V.B.; Evtushinsky, D.V.; Kim, T.K.; Morozov, I.V.; Yaresko, A.N.; Kordyuk, A.A.; Behr, G.; Vasiliev, A.; Follath, R.; Büchner, B. Superconductivity without nesting in LiFeAs. Phys. Rev. Lett. 2010, 105, 067002, doi:10.1103/PhysRevLett.105.067002. 20867999
[8]  Inosov, D.S.; White, J.S.; Evtushinsky, D.V.; Morozov, I.V.; Cameron, A.; Stockert, U.; Zabolotnyy, V.B.; Kim, T.K.; Kordyuk, A.A.; Borisenko, S.V.; et al. Weak superconducting pairing and a single isotropic energy gap in stoichiometric LiFeAs. Phys. Rev. Lett. 2010, 104, 187001:1–4.
[9]  Stockert, U.; Abdel-Hafiez, M.; Evtushinsky, D.V.; Zabolotnyy, V.B.; Wolter, A.U.B.; Wurmehl, S.; Morozov, I.; Klingeler, R.; Borisenko, S.V.; Büchner, B.; Braden, M. Specific heat and angle-resolved photoemission spectroscopy study of the superconducting gaps in LiFeAs. Phys. Rev. B 2011, 83, 224512:1–6.
[10]  Kordyuk, A.A.; Zabolotnyy, V.B.; Evtushinsky, D.V.; Kim, T.K.; Morozov, I.V.; Kuli?, M.L.; Follath, R.; Behr, G.; Büchner, B.; Borisenko, S.V. Angle-resolved photoemission spectroscopy of superconducting LiFeAs: Evidence for strong electron-phonon coupling. Phys. Rev. B 2011, 83, 134513:1–6.
[11]  Qureshi, N.; Steffens, P.; Drees, Y.; Komarek, A.C.; Lamago, D.; Sidis, Y.; Harnagea, L.; Grafe, H.-J.; Wurmehl, S.; Büchner, B.; Braden, M. Incommensurate magnetic excitations in superconducting LiFeAs. 2011. Available online: http://arxiv.org/pdf/1108.6187v1.pdf (accessed on 20 March 2012). Unpublished.
[12]  Taylor, A.E.; Pitcher, M.J.; Ewings, R.A.; Perring, T.G.; Clarke, S.J.; Boothroyd, A.T. Spin fluctuations in LiFeAs observed by neutron scattering. Phys. Rev. B 2011, 83, 220514:1–4.
[13]  Kontani, H.; Onari, S. Orbital-fluctuation-mediated superconductivity in iron pnictides: Analysis of the five-orbital hubbard-holstein model. Phys. Rev. Lett. 2010, 104, 157001:1–4.
[14]  Yanagi, Y.; Yamakawa, Y.; Ono, Y. Two types of s-wave pairing due to magnetic and orbital fluctuations in the two-dimensional 16-band d-p model for iron-based superconductors. Phys. Rev. B 2010, 81, 054518:1–10.
[15]  Wang, X.C.; Liu, Q.Q.; Lv, Y.X.; Gao, W.B.; Yang, L.X.; Yu, R.C.; Li, F.Y.; Jin, C.Q. The superconductivity at 18 K in LiFeAs system. Solid State Commun. 2008, 148, 538–540, doi:10.1016/j.ssc.2008.09.057.
[16]  Tapp, J.H.; Tang, Z.J.; Lv, B. Sasmal, K.; Lorenz, B.; Chu, P.C.W.; Guloy, A.M. LiFeAs: An intrinsic FeAs-based superconductor with Tc = 18 K. Phys. Rev. B 2008, 78, 060505:1–4.
[17]  Morozov, I.; Boltalin, A.; Volkova, O.; Vasiliev, A.; Kataeva, O.; Stocker, U.; Abdel-Hafiez, M.; Bombor, D.; Bachmann, A.; Harnagea, L.; et al. Single crystal growth and characterization of superconducting LiFeAs. Cryst. Growth Des. 2010, 10, 4429–4432.
[18]  Lankau, A.; Koepernik, K.; Borisenko, S.; Zabolotnyy, V.; Büchner, B.; van den Brink, J.; Eschrig, H. Absence of surface states for LiFeAs investigated using density functional calculations. Phys. Rev. B 2010, 82, 184518:1–5.
[19]  Innocenti, D.; Caprara, S.; Poccia, N.; Ricci, A.; Valletta, A.; Bianconi, A. Shape resonance for the gaps near a Lifshitz transition: the effect of electron hopping between layers. Supercond. Sci. Technol. 2011, 24, 015012, doi:10.1088/0953-2048/24/1/015012.
[20]  H?nke, T.; Sykora, S.; Schlegel, R.; Baumann, D.; Harnagea, L.; Wurmehl, S.; Daghofer, M.; Büchner, B.; van den Brink, J.; Hess, C. Probing unconventional superconductivity in LiFeAs by quasiparticle interference. 2012. Available online: http://arxiv.org/pdf/1106.4217v3.pdf (accessed on 20 March 2012). Unpublished.
[21]  Takagi, H. Workshop on iron pnictides in Bad Honnef, Germany, 12–13 April, 2011Unpublished. .
[22]  Liu, Z.-H.; Nakayama, K.; Chen, G .-F.; Dong, S.; He, J.-B.; Wang, D.-M.; Xia, T.-L.; Umezawa, K.; Kawahara, T.; Souma, S.; et al. Unconventional superconducting gap in NaFe$_{0.95}$Co$_{0.05}$As observed by ARPES. Phys. Rev. B 2011, 84, 064519:1–5.
[23]  Dahm, T.; Hinkov, V.; Borisenko, S.V.; Kordyuk, A.A.; Zabolotnyy, V.B.; Fink, J.; Büchner, B.; Scalapino, D.J.; Hanke, W.; Keimer, B.; et al. Strength of the spin-fluctuation-mediated pairing interaction in a high-temperature superconductor. Nat. Phys. 2009, 5, 217, doi:10.1038/nphys1180.
[24]  Jishi, R.A.; Alyahyaei, H.M. Electronic and lattice dynamical properties of the iron-based superconductors LiFeAs and NaFeAs. Adv. Condens. Matter Phys. 2010, 2010, 804343.
[25]  Um, Y.J.; Park, J.T.; Min, B.H.; Song, Y.J.; Kwon, Y.S.; Keimer, B.; Le Tacon, M. Raman scattering study of the lattice dynamics of superconducting LiFeAs. 2011. Available online: http://arxiv.org/pdf/1109.5797.pdf (accessed on 20 March 2012). Unpublished.
[26]  Kruger, F.; Kumar, S.; Zaanen, J.; Brink, J. van den. Spin-orbital frustrations and anomalous metallic state in iron-pnictide superconductors. Phys. Rev. B 2009, 79, 054504:1–15.
[27]  Zabolotnyy, V.B.; Inosov, D.S.; Evtushinsky, D.V.; Koitzsch, A.; Kordyuk, A.A.; Sun, G.L.; Park, J.T.; Haug, D.; Hinkov, V.; Boris, A.V.; et al. (π, π)-Electronic order in iron arsenide superconductors. Nature 2009, 457, 569–572, doi:10.1038/nature07714. 19177126
[28]  Chen, F.; Zhou, B.; Zhang, Y.; Wei, J.; Ou, H.-W.; Zhao, J.-F.; He, C.; Ge, Q.-Q.; Arita, M.; Shimada, K.; et al. Electronic structure of Fe1.04(Te0.66Se0.34). Phys. Rev. B 2010, 81, 014526, doi:10.1103/PhysRevB.81.014526.
[29]  Yin, Z.P.; Haule, K.; Kotliar, G. Magnetism and charge dynamics in iron pnictides. Nat. Phys. 2011, 7, 294–297, doi:10.1038/nphys1923.
[30]  Skornyakov, S.L.; Skorikov, N.A.; Lukoyanov, A.V.; Shorikov, A.O.; Anisimov, V.I. LDA+DMFT spectral functions and effective electron mass enhancement in superconductor LaFePO. Phys. Rev. B 2010, 81, 174522:1–6.
[31]  Ferber, J.; Foyevtsova, K.; Valenti, R.; Jeschke, H.O. Effects of correlation in LiFeAs. 2011. Available online: http://itp.uni-frankfurt.de/~jeschke/papers/arxiv1111.1620v1.pdf (accessed on 20 March 2012). Unpublished.

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