output
20022026
most citedObservation of a new particle in the search for the Standard Model Higgs boson with the ATLAS detector at the LHC

10.9k citations

Showing 2006Show all

217 papers · 1 filter

math.FA2006

Riemann Rearrangement Theorem for some types of convergence

Yuriy Dybskiy, Konstantin Slutsky

We reexamine the Riemann Rearrangement Theorem for different types of convergence. We consider series convergence with respect to a filter. We describe the Sum Range (SR) of a seri…

math.PR2006

On Exponential Ergodicity of Multiclass Queueing Networks

David Gamarnik, Sean Meyn

One of the key performance measures in queueing systems is the exponential decay rate of the steady-state tail probabilities of the queue lengths. It is known that if a correspondi…

gr-qc2006★ 29 cited

Learning about compact binary merger: the interplay between numerical relativity and gravitational-wave astronomy

Thomas Baumgarte, Patrick Brady, Jolien D E Creighton +3

Activities in data analysis and numerical simulation of gravitational waves have to date largely proceeded independently. In this work we study how waveforms obtained from numerica…

astro-ph2006★ 235 cited

The 2dF-SDSS LRG and QSO Survey: QSO clustering and the L-z degeneracy

J. da Angela, T. Shanks, S. M. Croom +12

We combine the QSO samples from the 2dF QSO Redshift Survey (2QZ) and the 2dF-SDSS LRG and QSO Survey (2SLAQ) in order to investigate the clustering of z~1.4 QSOs and measure the c…

hep-ph2006★ 55 cited

|V_us| and m_s from hadronic tau decays

Elvira Gamiz, Matthias Jamin, Antonio Pich +2

Recent progress in the determination of |V_us| employing strange hadronic tau-decay data are reported. This includes using the recent OPAL update of the strange spectral function,…

cond-mat.str-el2006★ 58 cited

Nature of the Quantum Phase Transition in Quantum Compass Model

Han-Dong Chen, Chen Fang, Jiangping Hu +1

In this work, we show that the quantum compass model on an square lattice can be mapped to a fermionic model with local density interaction. We introduce a mean-field approximation…