Related papers: Soft Spheres Make More Mesophases
This paper has been withdrawn by the authors. Because of a misunderstanding, the paper was submitted prematurely to the arXiv. A replacement will follow.
This paper has been withdrawn by the author(s), due to the existence of a much better paper in http://arxiv.org/abs/cs.CR/0207027
This paper is withdrawn due to some errors, which are corrected in arXiv:0912.0071v4 [cs.LG].
This paper has been withdrawn.
We withdraw this paper due to insufficient arguments in the derivation of Theorem 1. See quant-ph/0005062 for the new paper
The above mentioned paper is withdrawn.
Withdrawn paper because the results are recycled in several other papers and a new definition of T-homotopy is proposed in math.AT/0505152.
This paper has been withdrawn by the author, due to an error in Proposition 2.2.
This paper has been withdrawn
This paper has been withdrawn because the analytic estimates are not confirmed by the numerical calculation of Nilles, Peloso and Sorbo (hep-ph/0102264 and hep-th/0103202).
This paper has been withdrawn due to a missing hypothesis in the main statement.
This paper has been withdrawn by the author(s), due the following reasons. A similar system for a different purpose has already been studied in Phys.Rev.D60:083001,1999 (astro-ph/9904315). Moreover, our analysis was wrong because we have…
This paper has been withdrawn by the authors.
This paper has been withdrawn by the author due to rewritting and skipping crucial sign errors.
Withdrawn; replaced by longer, more detailed paper quant-ph/0010065.
Double-layered Sr3Ru2O7 has received phenomenal consideration because it exhibits a plethora of exotic phases when perturbed. New phases emerge with the application of pressure, magnetic field, or doping. Here we show that creating a…
This paper has been withdrawn by the author due to a errors in figure 3,4
this is a duplicate submission(original is arXiv:1612.02141). Hence want to withdraw it
This paper has been withdrawn by the author due to similarity to Author's other paper
It is shown that the mechanism to soften contributions of top squarks to the Higgs mass, discussed in "Supersoft Top Squarks", Phys. Rev. Lett. 125, no.15, 151801 (2020), is very similar, with identical result in the leading order, to the…