Selected Publications

Other Published Research

  • E. Khalaf, M. A. Skvortsov, and P. M. Ostrovsky,“Semiclassical electron transport at the edge of a
    two-dimensional topological insulator: Interplay of protected and unprotected modes”, Phys. Rev. B 93,
    125405 (2016)
  • R. Queiroz, E. Khalaf, and A. Stern,“Dimensional Hierarchy of Fermionic Interacting Topological
    Phases”, Phys. Rev. Lett. 117, 206405 (2016)
  • E. Khalaf and P. M. Ostrovsky,“Boundary scattering effects on magnetotransport of narrow metallic
    wires and films”, Phys. Rev. B 94, 165431 (2016)
  • E. Khalaf and P. M. Ostrovsky, “Localization effects on magnetotransport of a disordered Weyl
    semimetal”, Phys. Rev. Lett. 119, 106601 (2017)
  • S. Liu, A. Vishwanath, and E. Khalaf, “Shift insulators: rotation-protected two-dimensional topological
    crystalline insulators”, Phys. Rev. X 9, 031003, (2019)
  • J. Y. Lee*, E. Khalaf*, S. Liu, X. Liu, Z. Hao, P. Kim, and A. Vishwanath, “Theory of correlated
    insulating behaviour and spin-triplet superconductivity in twisted double bilayer graphene”, Nature
    Communications 10 (2019)
  • H. Nakamura, D. Huang, J. Merz, E. Khalaf, P. Ostrovsky, A. Yaresko, D. Samal, H. Takagi,“Robust
    weak antilocalization due to spin-orbital entanglement in Dirac material Sr3SnO”, Nature Communications
    11 (2020)
  • X. Liu, Z. Hao, E. Khalaf, J. Y. Lee, Y. Ronen, H. Yoo, D. H. Najafabadi, K. Watanabe, T. Taniguchi,
    A. Vishwanath, and P. Kim,“Tunable spin-polarized correlated states in twisted double bilayer graphene”,
    Nature 583 (7815), 221-225 (2020)
  • J. S. Hoffmann, F. A. Assaad, R. Queiroz, E. Khalaf,“Search for correlation-induced adiabatic paths
    between distinct topological insulators”, Phys. Rev. Research 2, 023390 (2020)
  • P. J. Ledwith, G. Tarnopolsky, E. Khalaf, A. Vishwanath,“Fractional Chern Insulator States in Twisted
    Bilayer Graphene: An Analytical Approach”, Phys. Rev. Research 2 023237 (2020)
  • D. S. Antonenko, E. Khalaf, P. M. Ostrovsky, M. A. Skvortsov, “Mesoscopic conductance fluctuations and
    noise in disordered Majorana wires” Phys. Rev. B 102, 195152 (2020)
  • S. Liu, E. Khalaf, J. Y. Lee, and A. Vishwanath, “Nematic topological semimetal and insulator in magic
    angle bilayer graphene at charge neutrality”, Phys. Rev. Research 3, 013033 (2021)
  • E. Khalaf, W. A. Benalcazar, T. L. Hughes, and R. Queiroz, “Boundary-obstructed topological phases”,
    Phys. Rev. Research 3, 013239 (2021)
  • Z. Hao, A. M. Zimmerman, P. Ledwith, E. Khalaf, D. H. Najafabadi, K. Watanabe, T. Taniguchi,
    A. Vishwanath, P. Kim “Electric field tunable unconventional superconductivity in alternating twist
    magic-angle trilayer graphene” Science 371 (6534), 1133-1138 (2021)
  • A. T. Pierce, Y. Xie, J. M. Park, E. Khalaf, S. H. Lee, Y. Cao, D. Parker, P. Forrester, S. Chen,
    K. Watanabe, T. Taniguchi, A. Vishwanath, P. Jarillo-Herrero, A. Yacoby “Unconventional sequence of
    correlated Chern insulators in magic-angle twisted bilayer graphene” Nature Physics 17, 1210–1215 (2021)
  • P. J. Ledwith, E. Khalaf, A. Vishwanath, “Strong coupling theory of magic-angle graphene: A
    pedagogical introduction” Annals of Physics 435, Part 2, 168646 (2021)
  • Y. Xie, A. T. Pierce, J. M. Park, D. E. Parker, E. Khalaf, P. Ledwith, Y. Cao, S. H. Lee, S. Chen,
    P. R. Forrester, K. Watanabe, T. Taniguchi, A. Vishwanath, P. Jarillo-Herrero, A. Yacoby, “Fractional
    Chern insulators in magic-angle twisted bilayer graphene”, Nature 600, 439-443 (2021)
  • E. Khalaf, P. Ledwith, A. Vishwanath, “Symmetry constraints on superconductivity in twisted bilayer
    graphene: Fractional vortices, 4e condensates or non-unitary pairing” Phys. Rev. B 105, 224508 (2022)
  • J. S. Hofmann, E. Khalaf, A. Vishwanath, E. Berg, J. Y. Lee, “Fermionic Monte Carlo study of a realistic
    model of twisted bilayer graphene”, Phys. Rev. X 12, 011061 (2022)
  • P. J. Ledwith, A. Vishwanath, E. Khalaf, “Family of ideal chern flatbands with arbitrary chern number in
    chiral twisted graphene multilayers”, Phys. Rev. Lett. 128, 176404 (2022)
  • G. W. Burg, E. Khalaf, Y. Wang, K. Watanabe, T. Taniguchi, E. Tutuc, “Emergence of correlations in
    alternating twist quadrilayer graphene”, Nature Materials 21, 884-889 (2022)
  • Q. Gao, E. Khalaf, “Symmetry origin of lattice vibration modes in twisted multilayer graphene: Phasons
    versus moir´e phonons”, Phys. Rev. B 106, 075420 (2022)
  • E. Khalaf, A. Vishwanath, “Baby skyrmions in Chern ferromagnets and topological mechanism for
    spin-polaron formation in twisted bilayer graphene”, Nature Communications 13, 6245 (2022)
  • D. S. Antonenko, E. Khalaf, P. M. Ostrovsky, M. A. Skvortsov, “Anderson localization at the boundary of
    a two-dimensional topological superconductor”, Phys. Rev. B 107, 075417 (2023)
  • C. Shen, P. J. Ledwith, K. Watanabe, T. Taniguchi, E. Khalaf, A. Vishwanath, D. K. Efetov, “Dirac
    spectroscopy of strongly correlated phases in twisted trilayer graphene”, Nature Materials 22, 316-321
    (2023)
  • J. Dong, P. J. Ledwith, E. Khalaf, J. Y. Lee, A. Vishwanath, “Many-body ground states from
    decomposition of ideal higher Chern bands: Applications to chirally twisted graphene multilayers”,
    Phys. Rev. Research 5, 023166 (2023)
  • Q. Gao, J. Dong, P. Ledwith, D. Parker, E. Khalaf, “Untwisting moir´e physics: Almost ideal bands and
    fractional Chern insulators in periodically strained monolayer graphene”, Phys. Rev. Lett. 131, 096401
    (2023)

Preprints

  • E. Khalaf, B. Bultinck, A. Vishwanath, M. P. Zaletel, “Soft modes in magic angle twisted bilayer
    graphene”, arXiv:2009.14827 (2020)
  • P. J. Ledwith, E. Khalaf, Z. Zhu, S. Carr, E. Kaxiras, A. Vishwanath, “TB or not TB? Contrasting
    properties of twisted bilayer graphene and the alternating twist -layer structures (n = 3, 4, 5, . . .)”,
    arXiv:2009.14827 (2020)
  • D. Parker, P. Ledwith, E. Khalaf, T. Soejima, J. Hauschild, Y. Xie, A. Pierce, M. P. Zaletel, A. Yacoby,
    A. Vishwanath, “Field-tuned and zero-field fractional Chern insulators in magic angle graphene”, arXiv
    preprint arXiv:2112.13837 (2021)

* The star indicates joint lead authors (equal contribution)