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Part B: Condensed Matter Physics

Doping dependence of charge order in electron-doped cuprate superconductors

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Pages 3361-3380 | Received 25 Jul 2017, Accepted 07 Sep 2017, Published online: 04 Oct 2017

References

  • J.G. Bednorz and K.A. Müller, Possible high Tc superconductivity in the Ba-La-Cu-O system, Z. Phys. B 64 (1986), pp. 189–193.
  • Y. Tokura, H. Takagi, and S. Uchida, A superconducting copper oxide compound with electrons as the charge carriers, Nature 337 (1989), pp. 345–347.
  • P.W. Anderson, The resonating valence bond state in La2CuO4 and superconductivity, Science 235 (1987), pp. 1196–1198.
  • See e.g. P. Phillips, Identifying the propagating charge modes in doped Mott insulators, Rev. Mod. Phys. 82 (2010), pp. 1719–1742.
  • See e.g. Riccardo Comin and Andrea Damascelli, Resonant x-ray scattering studies of charge order in cuprates, Ann. Rev. Condens. Matter Phys. 7 (2016), pp. 369–405.
  • R. Comin, A. Frano, M.M. Yee, Y. Yoshida, H. Eisaki, E. Schierle, E. Weschke, R. Sutarto, F. He, A. Soumyanarayanan, Yang He, M. Le Tacon, I.S. Elfimov, Jennifer E. Hoffman, G.A. Sawatzky, B. Keimer, and A. Damascelli, Charge order driven by Fermi-arc instability in Bi2Sr2-xLaxCuO6+δ, Science 343 (2014), pp. 390–392.
  • Wu Tao, Hadrien Mayaffre, Steffen Krämer, Mladen Horvatić, Claude Berthier, W.N. Hardy, Ruixing Liang, D.A. Bonn, and Marc-Henri Julien, Magnetic-field-induced charge-stripe order in the high-temperature superconductor YBa2Cu3O6.67, Nature 477 (2011), pp. 191–194.
  • J. Chang, E. Blackburn, A.T. Holmes, N.B. Christensen, J. Larsen, J. Mesot, Ruixing Liang, D. A. Bonn, W. N. Hardy, A. Watenphul, M. v. Zimmermann, E. M. Forgan, and S. M. Hayden, Direct observation of competition between superconductivity and charge density wave order in YBa2Cu3O6.67, Nat. Phys. 8 (2012), pp. 871–876.
  • G. Ghiringhelli, M. Le Tacon, M. Minola, S. Blanco-Canosa, C. Mazzoli, N.B. Brookes, G.M. De Luca, A. Frano, D.G. Hawthorn, F. He, T. Loew, M. Moretti, Sala, D.C. Peets, M. Salluzzo, E. Schierle, R. Sutarto, G.A. Sawatzky, E. Weschke, B. Keimer, and L. Braicovich, Long-range incommensurate charge fluctuations in (Y, Nd)Ba2Cu3O6+x, Science 337 (2012), pp. 821–825.
  • Eduardo H. da Silva Neto, Pegor Aynajian, Alex Frano, Riccardo Comin, Enrico Schierle, Eugen Weschke, András Gyenis, Jinsheng Wen, John Schneeloch, Zhijun Xu, Shimpei Ono, Genda Gu, Mathieu Le Tacon, and Ali Yazdani, Ubiquitous interplay between charge ordering and high-temperature superconductivity in cuprates, Science 343 (2014), pp. 393–396.
  • G. Campi, A. Bianconi, N. Poccia, G. Bianconi, L. Barba, G. Arrighetti, D. Innocenti, J. Karpinski, N.D. Zhigadlo, S.M. Kazakov, M. Burghammer, M.v. Zimmermann, M. Sprung, and A. Ricci, Inhomogeneity of charge-density-wave order and quenched disorder in a high-Tc superconductor, Nature 525 (2015), pp. 359–362.
  • R. Comin, R. Sutarto, F. He, E.H. da Silva, Neto, L. Chauviere, A. Fraño, R. Liang, W.N. Hardy, D.A. Bonn, Y. Yoshida, H. Eisaki, A.J. Achkar, D.G. Hawthorn, B. Keimer, G.A. Sawatzky and A. Damascelli, Symmetry of charge order in cuprates, Nat. Mater. 14 (2015), pp. 796–800.
  • Makoto Hashimoto, Elizabeth A. Nowadnick, Rui-Hua He, Inna M. Vishik, Yu Brian Moritz, Kiyohisa Tanaka He, Robert G. Moore, Lu Donghui, Yoshiyuki Yoshida, Motoyuki Ishikado, Takao Sasagawa, Kazuhiro Fujita, Shigeyuki Ishida, Shinichi Uchida, Hiroshi Eisaki, Zahid Hussain, Thomas P. Devereaux, and Zhi-Xun Shen, Direct spectroscopic evidence for phase competition between the pseudogap and superconductivity in Bi2Sr2CaCu2O8+δ, Nat. Mater. 14 (2015), pp. 37–42.
  • Eduardo H. da Silva Neto, Riccardo Comin, Feizhou He, and Ronny Sutarto, Yeping Jiang, Richard L. Greene, George A. Sawatzky, and Andrea Damascelli, Charge ordering in the electron-doped superconductor Nd2-xCexCuO4, Science 347 (2015), pp. 282–285.
  • Eduardo H. da Silva Neto, Biqiong Yu, and Matteo Minola, Ronny Sutarto, Enrico Schierle, Fabio Boschini, Marta Zonno, Martin Bluschke, Joshua Higgins, Yangmu Li, Guichuan Yu, EugenWeschke, Feizhou He,Mathieu Le Tacon, Richard L. Greene,Martin Greven, George A. Sawatzky, Bernhard Keimer, and Andrea Damascelli, Doping-dependent charge order correlations in electron-doped cuprates, Sci. Adv. 2 (2016), pp. e1600782-1–e1600782-6.
  • M. Horio, T. Adachi, Y. Mori, A. Takahashi, T. Yoshida, H. Suzuki, L.C.C. Ambolode II, K. Okazaki, K. Ono, H. Kumigashira, H. Anzai, M. Arita, H. Namatame, M. Taniguchi, D. Ootsuki, K. Sawada, M. Takahashi, T. Mizokawa, Y. Koike, and A. Fujimori, Suppression of the antiferromagnetic pseudogap in the electron-doped high-temperature superconductor by protect annealing, Nat. Commun. 7 (2016), pp. 10567-1–10567-8.
  • N.P. Armitage, F. Ronning, D.H. Lu, C. Kim, A. Damascelli, K.M. Shen, D.L. Feng, H. Eisaki, Z.-X. Shen, P.K. Mang, N. Kaneko, M. Greven, Y. Onose, Y. Taguchi, and Y. Tokura, Doping dependence of an n-type cuprate superconductor investigated by angle-resolved photoemission spectroscopy, Phys. Rev. Lett. 88 (2002), pp. 257001-1–257001-4.
  • H. Matsui, T. Takahashi, T. Sato, K. Terashima, H. Ding, T. Uefuji, and K. Yamada, Evolution of the pseudogap across the magnet-superconductor phase boundary of Nd2-xCexCuO4, Phys. Rev. B. 75 (2007), pp. 224514-1–224514-4.
  • See e.g. N.P. Armitage, P. Fournier, and R.L. Greene, Progress and perspectives on electron-doped cuprates, Rev. Mod. Phys. 82 (2010), pp. 2421–2487.
  • T. Helm, M.V. Kartsovnik, M. Bartkowiak, N. Bittner, M. Lambacher, A. Erb, J. Wosnitza, and R. Gross, Evolution of the Fermi surface of the electron-doped high-temperature superconductor Nd2-xCexCuO4 revealed by Shubnikov-de Haas oscillations, Phys. Rev. Lett. 103 (2009), pp. 157002-1–157002-4.
  • T. Helm, M.V. Kartsovnik, I. Sheikin, M. Bartkowiak, F. Wolff-Fabris, N. Bittner, W. Biberacher, M. Lambacher, A. Erb, J. Wosnitza, and R. Gross, Magnetic breakdown in the electron-doped cuprate superconductor Nd2-xCexCuO4: the reconstructed Fermi surface survives in the strongly overdoped regime, Phys. Rev. Lett. 105 (2010), pp. 247002-1–247002-4.
  • M.V. Kartsovnik, T. Helm, C. Putzke, F. Wolff-Fabris, I. Sheikin, S. Lepault, C. Proust, D. Vignolles, N. Bittner, W. Biberacher, A. Erb, J. Wosnitza, and R. Gross, Fermi surface of the electron-doped cuprate superconductor Nd2-xCexCuO4 probed by high-field magnetotransport, New J. Phys. 13 (2011), pp. 015001-1–015001-17.
  • Nicholas P. Breznay, Ian M. Hayes, B.J. Ramshaw, Ross D. McDonald, Yoshiharu Krockenberger, Ai Ikeda, Hiroshi Irie, Hideki Yamamoto, and James G. Analytis, Shubnikov-de Haas quantum oscillations reveal a reconstructed Fermi surface near optimal doping in a thin film of the cuprate superconductor Pr1.86Ce0.14CuO4±δ, Phys. Rev. B 94 (2016), pp. 104514-1–104514-5.
  • A.F. Santander-Syro, M. Ikeda, T. Yoshida, A. Fujimori, K. Ishizaka, M. Okawa, S. Shin, R.L. Greene, and N. Bontemps, Two-Fermi-surface superconducting state and a nodal d-wave energy gap of the electron-doped Sm1.85Ce0.15CuO4-δ cuprate superconductor, Phys. Rev. Lett. 106 (2011), pp. 197002-1–197002-4.
  • Patrick A. Lee, Amperean pairing and the pseudogap phase of cuprate superconductors, Phys. Rev. X 4 (2014), pp. 031017-1–031017-13.
  • N. Harrison and S.E. Sebastian, On the relationship between charge ordering and the Fermi arcs observed in underdoped high Tc superconductors, New J. Phys. 16 (2014), pp. 063025-1–063025-9.
  • Subir Sachdev and Rolando La Placa, Bond order in two-dimensional metals with antiferromagnetic exchange interactions, Phys. Rev. Lett. 111 (2013), pp. 027202-1–027202-5.
  • H. Meier, M. Einenkel, C. Pépin, and K.B. Efetov, Effect of magnetic field on the competition between superconductivity and charge order below the pseudogap state, Phys. Rev. B. 88 (2013), pp. 020506(R)-1–020506(R)-5.
  • W.A. Atkinson, A.P. Kampf, and S. Bulut, Charge order in the pseudogap phase of cuprate superconductors, New J. Phys. 17 (2015), pp. 013025-1–013025-14.
  • Shiping Feng, Deheng Gao, and Huaisong Zhao, Charge order driven by Fermi-arc instability and its connection with pseudogap in cuprate superconductors, Phil. Mag. 96 (2016), pp. 1245–1262.
  • See e.g. A. Damascelli, Z. Hussain, and Z.-X. Shen, Angle-resolved photoemission studies of the cuprate superconductors, Rev. Mod. Phys. 75 (2003), pp. 473–541.
  • See e.g. J.C. Campuzano, M.R. Norman, and M. Randeira, Photoemission in the high-Tc superconductors, in The Physics of Superconductors Vol. II, Chapter 5, K.H. Bennemann and J.B. Ketterson, eds., Springer, Berlin, 2004, pp. 167–273.
  • L. Hozoi, M.S. Laad, and P. Fulde, Fermiology of cuprates from first principles: from small pockets to the Luttinger Fermi surface, Phys. Rev. B 78 (2008), pp. 165107-1–165107-8.
  • See e.g. E. Dagotto, Correlated electrons in high-temperature superconductors, Rev. Mod. Phys. 66 (1994), pp. 763–840.
  • See e.g. L. Yu, Many body problems in high temperature superconductivity, in Recent Progress in Many-Body Theories Vol. 3, T.L. Ainsworth, C.E. Campbell, B.E. Clements, and E. Krotscheck, eds., Plenum, New York, 1992, pp. 157–198.
  • Shiping Feng, J.B. Wu, Z.B. Su, and L. Yu, Slave-particle studies of the electron-momentum distribution in the low-dimensional t-J model, Phys. Rev. B. 47 (1993), pp. 15192–15200.
  • P.W. Anderson, Sources of quantum protection in high-Tc superconductivity, Science 288 (2000), pp. 480–482.
  • See e.g. P.A. Lee, N. Nagaosa, and X.-G. Wen, Doping a Mott insulator: physics of high-temperature superconductivity, Rev. Mod. Phys. 78 (2006), pp. 17–85.
  • Shiping Feng, Jihong Qin, and Tianxing Ma, A gauge invariant dressed holon and spinon description of the normal-state of underdoped cuprates, J. Phys.: Condens. Matter 16 (2004), pp. 343–359; Shiping Feng, Z.B. Su, and L. Yu, Fermion-spin transformation to implement the charge-spin separation, Phys. Rev. B 49 (1994), pp. 2368--2384.
  • See e.g. Shiping Feng, Yu Lan, Huaisong Zhao, Lülin Kuang, Ling Qin, and Xixiao Ma, Kinetic-energy driven superconductivity in cuprate superconductors, Int. J. Mod. Phys. B 29 (2015), pp. 1530009-1–1530009-93.
  • Shiping Feng, Lülin Kuang, and Huaisong Zhao, Electronic structure of cuprate superconductors in a full charge-spin recombination scheme, Physica C 517 (2015), pp. 5–15.
  • Li Cheng and Shiping Feng, Doping and energy evolution of spin dynamics in the electron-doped cuprate superconductor Pr0.88LaCe0.12CuO4-δ, Phys. Rev. B 77 (2008), pp. 054518–054518.
  • H.-B. Yang, J.D. Rameau, P.D. Johnson, T. Valla, A. Tsvelik, and G.D. Gu, Emergence of preformed Cooper pairs from the doped Mott insulating state in Bi2Sr2CaCu2O8+δ, Nature 456 (2008), pp. 77–80.
  • J. Chang, Y. Sassa, S. Guerrero, M. Mãnsson, M. Shi, S. Pailhés, A. Bendounan, R. Mottl, T. Claesson, O. Tjernberg, L. Patthey, M. Ido, M. Oda, N. Momono, C. Mudry, and J. Mesot, Electronic structure near the 1/8-anomaly in La-based cuprates, New J. Phys. 10 (2008), pp. 103016-1–103016-14.
  • Jianqiao Meng, Guodong Liu, Wentao Zhang, Lin Zhao, Haiyun Liu, Mu Xiaowen Jia, Shanyu Liu Daixiang, Lu Xiaoli Dong, Guiling Wang Wei, Yong Zhou, Yong Zhu, Xiaoyang Wang, Xu Zuyan, Chuangtian Chen, and X. J. Zhou, Coexistence of Fermi arcs and Fermi pockets in a high-T2 copper oxide superconductor, Nature 462 (2009), pp. 335–338.
  • H.-B. Yang, J.D. Rameau, Z.-H. Pan, G.D. Gu, P.D. Johnson, H. Claus, D.G. Hinks, and T.E. Kidd, Reconstructed Fermi surface of underdoped Bi2Sr2CaCu2O8+δ cuprate superconductors, Phys. Rev. Lett. 107 (2011), pp. 047003-1–047003-4.
  • Huaisong Zhao, Deheng Gao, and Shiping Feng, Pseudogap-generated a coexistence of Fermi arcs and Fermi pockets in cuprate superconductors, Physica C 534 (2017), pp. 1–8.
  • Dongjoon Song, Garam Han, Wonshik Kyung, Jeongjin Seo, Soohyun Cho, Beom Seo Kim, Masashi Arita, Kenya Shimada, Hirofumi Namatame, Masaki Taniguchi, Y. Yoshida, H. Eisaki, Seung Ryong Park, and C. Kim, Electron number-based phase diagram of Pr1-xLaCexCuO4-δ and possible absence of disparity between electron- and hole-doped cuprate phase diagrams, Phys. Rev. Lett. 118 (2017), pp. 137001-1–137001-5.
  • A.F. Santander-Syro, T. Kondo, J. Chang, A. Kaminski, S. Pailhes, M. Shi, L. Patthey, A. Zimmers, B. Liang, P. Li, and R.L. Greene, Anisotropic dressing of charge-carriers in the electron-doped cuprate superconductor Sm1.85Ce0.15CuO4 from angle-resolved photoemission measurements, preprint (2009), to appear in Physics. Available at arXiv:0903.3413.
  • T. Valla, A.V. Fedorov, P.D. Johnson, Q. Li, G.D. Gu, and N. Koshizuka, Temperature dependent scattering rates at the Fermi surface of optimally doped Bi2Sr2CaCu2O8+δ, Phys. Rev. Lett. 85 (2000), pp. 828–831.
  • A. Kaminski, H.M. Fretwell, M.R. Norman, M. Randeria, S. Rosenkranz, U. Chatterjee, J.C. Campuzano, J. Mesot, T. Sato, T. Takahashi, T. Terashima, M. Takano, K. Kadowaki, Z.Z. Li, and H. Raffy, Momentum anisotropy of the scattering rate in cuprate superconductors, Phys. Rev. B 71 (2005), pp. 014517-1–014517-7.
  • M. Shi, J. Chang, S. Pailhés, M.R. Norman, J.C. Campuzano, M. Mánsson, T. Claesson, O. Tjernberg, A. Bendounan, L. Patthey, N. Momono, M. Oda, M. Ido, C. Mudry, and J. Mesot, Coherent d-wave superconducting gap in underdoped La2-xSrxCuO4 by angle-resolved photoemission spectroscopy, Phys. Rev. Lett. 101 (2008), pp. 047002-1–047002-4.
  • Y. Sassa, M. Radović, M. Mánsson, E. Razzoli, X.Y. Cui, S. Pailhés, S. Guerrero, M. Shi, P.R. Willmott, F. Miletto, Granozio, J. Mesot, M.R. Norman, and L. Patthey, Ortho-II band folding in YBa2Cu3O7-δ films revealed by angle-resolved photoemission, Phys. Rev. B. 83 (2011), pp. 140511(R)-1–140511(R)-4.
  • N. Lin, E. Gull, and A.J. Millis, Two-particle response in cluster dynamical mean-field theory: formalism and application to the raman response of high-temperature superconductors, Phys. Rev. Lett. 109 (2012), pp. 106401-1–106401-5.
  • Pengfei Jing, Yiqun Liu, Huaisong Zhao, Lulin Kuang, and Shiping Feng, Pseudogap-induced anisotropic suppression of electronic Raman response in cuprate superconductors, Phil. Mag. Lett. 97 (2017), pp. 206–215.

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