Related papers: Quantum Electron Liquids and High-Tc Superconducti…
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This paper has been withdrawn by the authors (see text).
The paper has been withdrawn because the research work is still in progress.
This article has been withdrawn due to an error in a proof of the main result.
Withdrawn by arXiv administration because authors have forged affiliations and acknowledgements, and have not adequately responded to charges [hep-th/9912039] of unattributed use of verbatim material.
This paper has been withdrawn.
After receiving a number of comments and reviews from our colleagues who have suggested that our results could be greatly improved by other methods of extrapolation, we have decided to withdraw our paper entitled "Absence of…
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This paper has been withdrawn due to security loophole. We thank Dr G. P. he for pointing this to us.
This paper has been withdrawn by the authors due to crucial error on assumption in Eq. 2. We cannot assume v_R and v_L to be equal or even have the same sign.
This paper has been withdrawn by the author(s), due to some technical problem.
This paper has been withdrawn by the author. A much more revised version is available as arXiv:0909.4238.
This paper has been removed by arXiv administrators because of overlap with gr-qc/9910015 and hep-th/0308070. It also has excessive overlap with the following papers also written by the authors or their collaborators: gr-qc/0509047,…
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Conditions at which a quasi-one-dimensional (1D) electron system can be considered as a quantum liquid of impenetrable charged particles are theoretically analyzed. In the presence of an inert, neutralizing background, a motion of…
This paper is withdrawn. A revised and expanded version of this work is available as hep-ph/9603323.
This paper has been withdrawn by the authors, see P. Bozek and I. Wyskiel, arXiv: 1002.4999 [nucl-th]
This paper has been withdrawn.
Purely quantum electron systems exhibit intriguing correlated electronic phases by virtue of quantum fluctuations in addition to electron-electron interactions. To realize such quantum electron systems, a key ingredient is dense electrons…