Related papers: Slave modes in systems with many absorbing states
The paper is being withdrawn since the authors felt that the submission is a little premature after a careful reading by some of the experts in this field.
This paper has been withdrawn by the author, since now all four parts of the review are available as a single file 0804.1639. I also made some revision of the text in order to avoid misprints and some inaccurate expressions.
This paper has been withdrawn by the author due to a crucial sign error in equation 1
This paper has been withdrawn by the author due to an error.
This paper has been withdrawn by the author because it was a speculative investigation.
With regard to the recently published article, ``Y.-Q. Wang, et al., Physical mechanism of equiprobable exclusion network with heterogeneous interactions in phase transitions: Analytical analyses of steady state evolving from initial state,…
This paper has been withdrawn by the author due to some errors.
This paper has been withdrawn by the author; a revised version is part of the author's phd-thesis "Quasi-logarithmic structures" (Zurich, 2007).
There is a technical issue in the analysis that is not easily fixable. We, therefore, withdraw the submission. Sorry for the inconvenience.
This paper has been withdrawn by the authors, due to issues concerning the use of unpublished experimental data.
The computer code on which this paper relied contained an error. When corrected, the Monte Carlo evaluation of the ground state occupation is consistent with the conventional grand canonical calculation. Hence, the original version of this…
This paper has been withdrawn by the authors
This paper has been temporarily withdrawn by the author because there are errors in it that require further study.
The creation and destruction of agents in cooperative multi-agent reinforcement learning (MARL) is a critically under-explored area of research. Current MARL algorithms often assume that the number of agents within a group remains fixed…
This version has been withdrawn. The new and final version is on ArXiv 1103.4878
This paper has been withdrawn by the author due to a crucial sign error in equation 1.
This paper has been temporarily withdrawn by the author(s),
This paper has been withdrawn because of serious errors.
A so-called Renormalization Group (RG) analysis is performed in order to shed some light on why the density of prime numbers in $\Bbb N^*$ decreases like the single power of the inverse neperian logarithm.
This paper has been withdrawn by the authors due to a crucial error in the proof of the main result. In a new manuscript (with two new authors) available at arXiv:1010.2791v1 this problem has been resolved.