output
20022011
most citedConformal properties of four-gluon planar amplitudes and Wilson loops

572 citations

Showing 2011Show all

14 papers · 1 filter

math.NT20111 cited

Bernstein polynomials on Simplex

A. Bayad, T. Kim, S. -H. Rim

We prove two identities for multivariate Bernstein polynomials on simplex, which are considered on a pointwise. In this paper, we study good approximations of Bernstein polynomials…

math.PR2011

Internal DLA generated by cookie random walks on

Olivier Raimond, Bruno Schapira

We prove a law of large numbers for the right boundary in the model of internal DLA generated by cookie random walks in dimension one. The proof is based on stochastic algorithms t…

math-ph2011

Parametric Cutoffs for Interacting Fermi Liquids

Margherita Disertori, Jacques Magnen, Vincent Rivasseau

We introduce a new multiscale decomposition of the Fermi propagator based on its parametric representation. We prove that the corresponding sliced propagator obeys the same direct…

astro-ph.SR2011104 cited

Accurate p-mode measurements of the G0V metal-rich CoRoT target HD 52265

J. Ballot, L. Gizon, R. Samadi +27

The star HD 52265 is a G0V metal-rich exoplanet-host star observed in the seismology field of the CoRoT space telescope from November 2008 to March 2009. The satellite collected 11…

cond-mat.mtrl-sci201131 cited

High-pressure phase transitions in BiFeO3: hydrostatic vs. non-hydrostatic conditions

Mael Guennou, Pierre Bouvier, Raphaël Haumont +2

We report high-pressure x-ray diffraction experiments on BiFeO3 (BFO) single crystals in diamond-anvil cells up to 14 GPa. Two data sets are compared, one in hydrostatic conditions…

cond-mat.mtrl-sci20112 cited

Structural study of a rare earth-rich aluminoborosilicate glass containing various alkali and alkaline-earth modifier cations

Arnaud Quintas, Daniel Caurant, Odile Majérus +4

A rare-earth rich aluminoborosilicate glass of composition (given in wt.%): 50.68 SiO2 - 4.25 Al2O3 - 8.50 B2O3 - 12.19 M2O - 4.84 M'O - 3.19 ZrO2 - 16.35 Nd2O3 (where M and M' are…