Crossref journal-article
Springer Science and Business Media LLC
Nature Physics (297)
Bibliography

Rosenthal, E. P., Andrade, E. F., Arguello, C. J., Fernandes, R. M., Xing, L. Y., Wang, X. C., Jin, C. Q., Millis, A. J., & Pasupathy, A. N. (2014). Visualization of electron nematicity and unidirectional antiferroic fluctuations at high temperatures in NaFeAs. Nature Physics, 10(3), 225–232.

Authors 9
  1. E. P. Rosenthal (first)
  2. E. F. Andrade (additional)
  3. C. J. Arguello (additional)
  4. R. M. Fernandes (additional)
  5. L. Y. Xing (additional)
  6. X. C. Wang (additional)
  7. C. Q. Jin (additional)
  8. A. J. Millis (additional)
  9. A. N. Pasupathy (additional)
References 50 Referenced 165
  1. Scalapino, D. J. A common thread: The pairing interaction for unconventional superconductors. Rev. Mod. Phys. 84, 1383–1417 (2012). (10.1103/RevModPhys.84.1383) / Rev. Mod. Phys. by DJ Scalapino (2012)
  2. Wang, F. & Lee, D. H. The electron-pairing mechanism of iron-based superconductors. Science 332, 200–204 (2011). (10.1126/science.1200182) / Science by F Wang (2011)
  3. Basov, D. N. & Chubukov, A. V. Manifesto for a higher Tc . Nature Phys. 7, 272–276 (2011). (10.1038/nphys1975) / Nature Phys. by DN Basov (2011)
  4. Johnston, D. C. The puzzle of high temperature superconductivity in layered iron pnictides and chalcogenides. Adv. Phys. 59, 803–1061 (2010). (10.1080/00018732.2010.513480) / Adv. Phys. by DC Johnston (2010)
  5. Yi, M. et al. Symmetry-breaking orbital anisotropy observed for detwinned Ba(Fe1−xCox)2As2 above the spin density wave transition. Proc. Natl Acad. Sci. USA 108, 6878–6883 (2011). (10.1073/pnas.1015572108) / Proc. Natl Acad. Sci. USA by M Yi (2011)
  6. De la Cruz, C. et al. Magnetic order close to superconductivity in the iron-based layered LaO(1−x)F(x)FeAs systems. Nature 453, 899–902 (2008). (10.1038/nature07057) / Nature by C De la Cruz (2008)
  7. Fernandes, R. M. et al. Unconventional pairing in the iron arsenide superconductors. Phys. Rev. B 81, 140501(R) (2010). (10.1103/PhysRevB.81.140501) / Phys. Rev. B by RM Fernandes (2010)
  8. Nandi, S. et al. Anomalous suppression of the orthorhombic lattice distortion in superconducting Ba(Fe1−xCox)2As2 single crystals. Phys. Rev. Lett. 104, 057006 (2010). (10.1103/PhysRevLett.104.057006) / Phys. Rev. Lett. by S Nandi (2010)
  9. Chu, J. H. et al. In-plane resistivity anisotropy in an underdoped iron arsenide superconductor. Science 329, 824–826 (2010). (10.1126/science.1190482) / Science by JH Chu (2010)
  10. Tanatar, M. A. et al. Uniaxial-strain mechanical detwinning of CaFe2As2 and BaFe2As2 crystals: Optical and transport study. Phys. Rev. B 81, 184508 (2010). (10.1103/PhysRevB.81.184508) / Phys. Rev. B by MA Tanatar (2010)
  11. Kasahara, S. et al. Electronic nematicity above the structural and superconducting transition in BaFe2(As1−xPx)2 . Nature 486, 382–385 (2012). (10.1038/nature11178) / Nature by S Kasahara (2012)
  12. Chu, J. H., Kuo, H. H., Analytis, J. G. & Fisher, I. R. Divergent nematic susceptibility in an iron arsenide superconductor. Science 337, 710–712 (2012). (10.1126/science.1221713) / Science by JH Chu (2012)
  13. Gallais, Y. et al. Observation of incipient charge nematicity in Ba(Fe1−xCox)2As2 . Phys. Rev. Lett. 111, 267001 (2013). (10.1103/PhysRevLett.111.267001) / Phys. Rev. Lett. by Y Gallais (2013)
  14. Dusza, A. et al. Anisotropic charge dynamics in detwinned Ba(Fe1−xCox)2As2 . Europhys. Lett. 93, 37002 (2011). (10.1209/0295-5075/93/37002) / Europhys. Lett. by A Dusza (2011)
  15. Nakajima, M. et al. Unprecedented anisotropic metallic state in undoped iron arsenide BaFe2As2 revealed by optical spectroscopy. Proc. Natl Acad. Sci. USA 108, 12238–12242 (2011). (10.1073/pnas.1100102108) / Proc. Natl Acad. Sci. USA by M Nakajima (2011)
  16. Dhital, C. et al. Effect of uniaxial strain on the structural and magnetic phase transitions in BaFe2As2 . Phys. Rev. Lett. 108, 087001 (2012). (10.1103/PhysRevLett.108.087001) / Phys. Rev. Lett. by C Dhital (2012)
  17. Fang, C., Yao, H., Tsai, W. F., Hu, J. P. & Kivelson, S. A. Theory of electron nematic order in LaFeAsO. Phys. Rev. B 77, 224509 (2008). (10.1103/PhysRevB.77.224509) / Phys. Rev. B by C Fang (2008)
  18. Xu, C., Muller, M. & Sachdev, S. Ising and spin orders in the iron-based superconductors. Phys. Rev. B 78, 020501(R) (2008). (10.1103/PhysRevB.78.020501) / Phys. Rev. B by C Xu (2008)
  19. Mazin, I. I. & Johannes, M. D. A key role for unusual spin dynamics in ferropnictides. Nature Phys. 5, 141–145 (2009). (10.1038/nphys1160) / Nature Phys. by II Mazin (2009)
  20. Fernandes, R. M., Abrahams, E. & Schmalian, J. Anisotropic in-plane resistivity in the nematic phase of the iron pnictides. Phys. Rev. Lett. 107, 217002 (2011). (10.1103/PhysRevLett.107.217002) / Phys. Rev. Lett. by RM Fernandes (2011)
  21. Fernandes, R. M., Chubukov, A. V., Knolle, J., Eremin, I. & Schmalian, J. Preemptive nematic order, pseudogap, and orbital order in the iron pnictides. Phys. Rev. B 85, 024534 (2012). (10.1103/PhysRevB.85.024534) / Phys. Rev. B by RM Fernandes (2012)
  22. Lv, W. C. & Phillips, P. Orbitally and magnetically induced anisotropy in iron-based superconductors. Phys. Rev. B 84, 174512 (2011). (10.1103/PhysRevB.84.174512) / Phys. Rev. B by WC Lv (2011)
  23. Chen, C. C. et al. Orbital order and spontaneous orthorhombicity in iron pnictides. Phys. Rev. B 82, 100504(R) (2010). (10.1103/PhysRevB.82.100504) / Phys. Rev. B by CC Chen (2010)
  24. Kontani, H., Saito, T. & Onari, S. Origin of orthorhombic transition, magnetic transition, and shear-modulus softening in iron pnictide superconductors: Analysis based on the orbital fluctuations theory. Phys. Rev. B 84, 024528 (2011). (10.1103/PhysRevB.84.024528) / Phys. Rev. B by H Kontani (2011)
  25. Song, C. L. et al. Direct observation of nodes and twofold symmetry in FeSe superconductor. Science 332, 1410–1413 (2011). (10.1126/science.1202226) / Science by CL Song (2011)
  26. Chuang, T. M. et al. Nematic electronic structure in the ‘Parent’ state of the iron-based superconductor Ca(Fe1−xCox)2As2 . Science 327, 181–184 (2010). (10.1126/science.1181083) / Science by TM Chuang (2010)
  27. Zhou, X. D. et al. Quasiparticle interference of C2-symmetric surface states in a LaOFeAs parent compound. Phys. Rev. Lett. 106, 087001 (2011). (10.1103/PhysRevLett.106.087001) / Phys. Rev. Lett. by XD Zhou (2011)
  28. Zhou, X. D. et al. Evolution from unconventional spin density wave to superconductivity and a pseudogaplike phase in NaFe1−xCoxAs. Phys. Rev. Lett. 109, 037002 (2012). (10.1103/PhysRevLett.109.037002) / Phys. Rev. Lett. by XD Zhou (2012)
  29. Hanke, T. et al. Probing the unconventional superconducting state of LiFeAs by quasiparticle interference. Phys. Rev. Lett. 108, 127001 (2012). (10.1103/PhysRevLett.108.127001) / Phys. Rev. Lett. by T Hanke (2012)
  30. Allan, M. P. et al. Anisotropic energy gaps of iron-based superconductivity from intraband quasiparticle interference in LiFeAs. Science 336, 563–567 (2012). (10.1126/science.1218726) / Science by MP Allan (2012)
  31. Hanaguri, T. et al. Scanning tunneling microscopy/spectroscopy of vortices in LiFeAs. Phys. Rev. B 85, 214505 (2012). (10.1103/PhysRevB.85.214505) / Phys. Rev. B by T Hanaguri (2012)
  32. Grothe, S. et al. Bound states of defects in superconducting LiFeAs studied by scanning tunneling spectroscopy. Phys. Rev. B. 86, 174503 (2012). (10.1103/PhysRevB.86.174503) / Phys. Rev. B. by S Grothe (2012)
  33. Wang, X. C. et al. The superconductivity at 18 K in LiFeAs system. Solid State Commun. 148, 538–540 (2008). (10.1016/j.ssc.2008.09.057) / Solid State Commun. by XC Wang (2008)
  34. Tapp, J. H. et al. LiFeAs: An intrinsic FeAs-based superconductor with Tc = 18 K. Phys. Rev. B 78, 060505(R) (2008). (10.1103/PhysRevB.78.060505) / Phys. Rev. B by JH Tapp (2008)
  35. Chu, C. W. et al. The synthesis and characterization of LiFeAs and NaFeAs. Physica C 469, 326–331 (2009). (10.1016/j.physc.2009.03.016) / Physica C by CW Chu (2009)
  36. Kalisky, B. et al. Stripes of increased diamagnetic susceptibility in underdoped superconducting Ba(Fe(1−x)Cox)2As2 single crystals: Evidence for an enhanced superfluid density at twin boundaries. Phys. Rev. B 81, 184513 (2010). (10.1103/PhysRevB.81.184513) / Phys. Rev. B by B Kalisky (2010)
  37. Allan, M. P. et al. Anisotropic impurity states, quasiparticle scattering and nematic transport in underdoped Ca(Fe1−xCox)2As2 . Nature Phys. 9, 220–224 (2013). (10.1038/nphys2544) / Nature Phys. by MP Allan (2013)
  38. Knolle, J., Eremin, I., Akbari, A. & Moessner, R. Quasiparticle interference in the spin-density wave phase of iron-based superconductors. Phys. Rev. Lett. 104, 257001 (2010). (10.1103/PhysRevLett.104.257001) / Phys. Rev. Lett. by J Knolle (2010)
  39. Crommie, M. F., Lutz, C. P. & Eigler, D. M. Imaging standing waves in a two-dimensional electron gas. Nature 363, 524–527 (1993). (10.1038/363524a0) / Nature by MF Crommie (1993)
  40. Yi, M. et al. Electronic reconstruction through the structural and magnetic transitions in detwinned NaFeAs. New J. Phys. 14, 073019 (2012). (10.1088/1367-2630/14/7/073019) / New J. Phys. by M Yi (2012)
  41. Zhang, Y. et al. Symmetry breaking via orbital-dependent reconstruction of electronic structure in detwinned NaFeAs. Phys. Rev. B 85, 085121 (2012). (10.1103/PhysRevB.85.085121) / Phys. Rev. B by Y Zhang (2012)
  42. Wang, A. F. et al. A crossover in the phase diagram of NaFe1−xCoxAs determined by electronic transport measurements. New J. Phys. 15, 043048 (2013). (10.1088/1367-2630/15/4/043048) / New J. Phys. by AF Wang (2013)
  43. Wang, Q. H. & Lee, D. H. Quasiparticle scattering interference in high-temperature superconductors. Phys. Rev. B 67, 020511(R) (2003). (10.1103/PhysRevB.67.020511) / Phys. Rev. B by QH Wang (2003)
  44. Chatterjee, U. et al. Nondispersive fermi arcs and the absence of charge ordering in the pseudogap phase of Bi2Sr2CaCu2O8+δ . Phys. Rev. Lett. 96, 107006 (2006). (10.1103/PhysRevLett.96.107006) / Phys. Rev. Lett. by U Chatterjee (2006)
  45. Ran, Y., Wang, F., Zhai, H., Vishwanath, A. & Lee, D. H. Nodal spin density wave and band topology of the FeAs-based materials. Phys. Rev. B 79, 014505 (2009). (10.1103/PhysRevB.79.014505) / Phys. Rev. B by Y Ran (2009)
  46. Lee, P. A., Rice, T. M. & Anderson, P. W. Fluctuation effects at a Peierls transition. Phys. Rev. Lett. 31, 462–465 (1973). (10.1103/PhysRevLett.31.462) / Phys. Rev. Lett. by PA Lee (1973)
  47. Park, J. T. et al. Similar zone-center gaps in the low-energy spin-wave spectra of Na1−δ FeAs and BaFe2As2 . Phys. Rev. B 86, 024437 (2012). (10.1103/PhysRevB.86.024437) / Phys. Rev. B by JT Park (2012)
  48. Ma, L. et al. Na-23 and As-75 NMR study of antiferromagnetism and spin fluctuations in NaFeAs single crystals. Phys. Rev. B 83, 132501 (2011). (10.1103/PhysRevB.83.132501) / Phys. Rev. B by L Ma (2011)
  49. Maeter, H. et al. Structural and electronic phase diagrams of CeFeAsO1−xFx and SmFeAsO1−xFx. Preprint at http://arxiv.org/abs/1210.6959  (2012)
  50. Song, Y. et al. Uniaxial pressure effect on structural and magnetic phase transitions in NaFeAs and its comparison with as-grown and annealed BaFe2As2 . Phys. Rev. B 87, 184511 (2013). (10.1103/PhysRevB.87.184511) / Phys. Rev. B by Y Song (2013)
Dates
Type When
Created 11 years, 6 months ago (Feb. 7, 2014, 11:38 a.m.)
Deposited 2 years, 3 months ago (May 18, 2023, 7:55 p.m.)
Indexed 4 weeks, 1 day ago (Aug. 7, 2025, 5:01 p.m.)
Issued 11 years, 6 months ago (Feb. 9, 2014)
Published 11 years, 6 months ago (Feb. 9, 2014)
Published Online 11 years, 6 months ago (Feb. 9, 2014)
Published Print 11 years, 6 months ago (March 1, 2014)
Funders 0

None

@article{Rosenthal_2014, title={Visualization of electron nematicity and unidirectional antiferroic fluctuations at high temperatures in NaFeAs}, volume={10}, ISSN={1745-2481}, url={http://dx.doi.org/10.1038/nphys2870}, DOI={10.1038/nphys2870}, number={3}, journal={Nature Physics}, publisher={Springer Science and Business Media LLC}, author={Rosenthal, E. P. and Andrade, E. F. and Arguello, C. J. and Fernandes, R. M. and Xing, L. Y. and Wang, X. C. and Jin, C. Q. and Millis, A. J. and Pasupathy, A. N.}, year={2014}, month=feb, pages={225–232} }