Related papers: Field induced helical phase in surface superconduc…
Three-dimensional topological insulators represent a new class of materials in which transport is governed by Dirac surface states while the bulk remains insulating. Due to helical spin polarization of the surface states, the coupling of a…
This paper has been withdrawn by the authors, due to issues concerning the use of unpublished experimental data.
This paper is withdrawn by the author. See math.GT/9811093 for replacement.
This paper has been withdrawn by the authors, see P. Bozek and I. Wyskiel, arXiv: 1002.4999 [nucl-th]
This manuscript has been withdrawn by the author. Some of the material has been included in the manuscript 'Embedded Monopoles' at hep-th/0106254.
This paper has been withdrawn. See published paper http://arxiv.org/math.HO/0512390
This paper has been withdrawn by the author because of copyright reasons.
This paper has been withdrawn to address an omission. It will be resubmitted in the near future.
The paper has been withdrawn due to very low reproducibility. About 100 samples have been made, only 3 samples show the superconducting-like behavior. We think it may be an unlikely result.
The helical edge states in a quantum spin Hall insulator are presumably protected by time- reversal symmetry. However, even in the presence of magnetic field which breaks time-reversal symmetry, the helical edge conduction can still exist,…
This paper has been withdrawn by the author.
The paper is withdrawn.
This paper has been withdrawn by the author due to inconsistency of the considered working hypothesis. The consistent treatment is presented in the last publications of the author.
This paper has been withdrawn due to a sign error in the equation for F_11 which invalidates many results.
The original version of this paper has been withdrawn by the authors and merged with the revised version of astro-ph/9702014.
This paper has been withdrawn by the author because it is superseded by a new preprint: Tran Doan Huan & Nguyen Phuc Hai: arXiv:1010.5162.
This paper has been withdrawn by the authors, due a crucial error in Sec. 3.
This paper has been withdrawn by the author(s) because some experimental results have not been checked by the last two authors.
This paper has been withdrawn by the author due to unspecified problems.
This version corrects an inportant typographical error in Eq. 17. COMMENTS, FOR THE RECORD: A referees reoprt from Phys. Rev. Lett. read in part ``The first named author has appreciated my exceptionally long report. He has read and well…