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Welcome to PMC Physics B
Editor-in-chief: Stephen Buckman (Australian National University) and Peter Hatton (University of Durham)
Aims & scope
PMC Physics B is an international, peer-reviewed, open access journal that publishes articles on condensed matter, atomic, molecular and optical physics and the interfaces between these areas. Read more
The journal is jointly edited by Professors Stephen Buckman and Peter Hatton, supported by an Editorial Board representing the subject areas within the journal's scope.
Copyright for research articles is retained by the author, who is free to distribute the article electronically or after printing, or to ask the publishers to do so. Discussion and debate concerning articles published in PMC Physics B is actively encouraged; readers have the facility to append comments to articles, and all such communications are moderated by the editors.
Quotes
“I am delighted to be working with PhysMath Central and to be one of the editors for this ambitious journal. As well as providing a open access option for scientists to publish their very best work on condensed matter or AMO physics, we are particularly excited to cover emerging areas which were traditionally at the interface of one or the other discipline.”
Stephen Buckman, Editor-in-Chief - PMC Physics B
Latest articles 
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PMC Physics B 2008, 1:16 (30 October 2008)
Evolution of structure of spherical SiO2 nanoparticles upon cooling from the melt has been investigated via Molecular Dynamics simulations under non-periodic boundary conditions. Our results show significant temperature dependence of structure of nanoparticles, and we discuss the temperature dependence of the concentration of structural defects.
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PMC Physics B 2008, 1:15 (21 October 2008)
It has been found that an applied magnetic field affects the interaction of polyaniline chains with paramagnetic metal ion impurities, and induces formation of magnetically ordered regions in contrast to the reference film of the same composition but prepared under ambient conditions. Correlations are found between the distribution of magnetically ordered regions and peculiarities of the surface relief of a film.
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PMC Physics B 2008, 1:14 (21 October 2008)
We investigate the effect of a microwave field on a confined two dimensional electron gas containing an insulating region comparable to the Fermi wavelength. A Bosonized formulation of the two dimensional gas in the presence of insulating regions allows us to compute the rectified current. The proposed theory may explain experimental results recently reported by J. Zhang et al.
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PMC Physics B 2008, 1:13 (6 June 2008)
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PMC Physics B 2008, 1:12 (19 May 2008)
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PMC Physics B 2008, 1:11 (8 April 2008)
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PMC Physics B 2008, 1:8 (17 March 2008)
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PMC Physics B 2008, 1:7 (12 March 2008)
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PMC Physics B 2008, 1:6 (19 February 2008)
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PMC Physics B 2008, 1:5 (14 February 2008)
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PMC Physics B 2008, 1:4 (12 February 2008)
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PMC Physics B 2008, 1:3 (4 February 2008)
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PMC Physics B 2008, 1:2 (4 February 2008)
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PMC Physics B 2008, 1:1 (4 February 2008)
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