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@ARTICLE{Epping:877349,
      author       = {Epping, Alexander and Volk, Christian and Buckstegge,
                      Frederic and Watanabe, Kenji and Taniguchi, Takashi and
                      Stampfer, Christoph},
      title        = {{I}nsulating {S}tate in {L}ow‐{D}isorder {G}raphene
                      {N}anoribbons},
      journal      = {Physica status solidi / B Basic research},
      volume       = {256},
      number       = {12},
      issn         = {1521-3951},
      address      = {Weinheim},
      publisher    = {Wiley-VCH},
      reportid     = {FZJ-2020-02156},
      pages        = {1900269 -},
      year         = {2019},
      abstract     = {Quantum transport measurements on etched graphene
                      nanoribbons encapsulated in hexagonal boron nitride (hBN)
                      are reported. At zero magnetic field, the devices behave
                      qualitatively very similar to those reported for graphene
                      nanoribbons on SiO2 or hBN, but exhibit a considerably
                      smaller transport gap. At magnetic fields of around 3 T,
                      the transport behavior changes significantly and is
                      dominated by a much larger energy gap induced by electron–
                      electron interactions which completely suppress the
                      transport. This energy gap increases with a slope in the
                      order of 3–4 meV T−1, reaching values of up to
                      30 meV at 9 T.},
      cin          = {PGI-9 / JARA-FIT},
      ddc          = {530},
      cid          = {I:(DE-Juel1)PGI-9-20110106 / $I:(DE-82)080009_20140620$},
      pnm          = {521 - Controlling Electron Charge-Based Phenomena
                      (POF3-521)},
      pid          = {G:(DE-HGF)POF3-521},
      typ          = {PUB:(DE-HGF)16},
      UT           = {WOS:000510441200013},
      doi          = {10.1002/pssb.201900269},
      url          = {https://juser.fz-juelich.de/record/877349},
}