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20022009
most citedThe Sloan Digital Sky Survey Quasar Catalog IV. Fifth Data Release

479 citations

Showing 2009Show all

12 papers · 1 filter

math.ST20091 cited

Estimation of a discrete monotone distribution

Hanna K. Jankowski, Jon A. Wellner

We study and compare three estimators of a discrete monotone distribution: (a) the (raw) empirical estimator; (b) the "method of rearrangements" estimator; and (c) the maximum like…

cs.IT200922 cited

Expectation Maximization as Message Passing - Part I: Principles and Gaussian Messages

Justin Dauwels, Andrew Eckford, Sascha Korl +1

It is shown how expectation maximization (EM) may be viewed as a message passing algorithm in factor graphs. In particular, a general EM message computation rule is identified. As…

hep-ph200918 cited

Status of the Hadronic tau Decay Determination of |V_{us}|

K. Maltman, C. E. Wolfe, S. Banerjee +2

We update the hadronic tau determination of |V_{us}|, showing that current strange branching fractions produce results 2-3 sigma lower than 3-family unitarity expectations. Issues…

astro-ph.CO2009149 cited

A Public, K-Selected, Optical-to-Near-Infrared Catalog of the Extended Chandra Deep Field South (ECDFS) from the MUltiwavelength Survey by Yale-Chile (MUSYC)

Edward N Taylor, Marijn Franx, Pieter G van Dokkum +20

We present a new K-selected, optical-to-near-infrared photometric catalog of the Extended Chandra Deep Field South (ECDFS), making it publicly available to the astronomical communi…

hep-ex200918 cited

Search for the standard model Higgs boson in tau final states

D0 Collaboration, V. Abazov

We present a search for the standard model Higgs boson using hadronically decaying tau leptons, in 1 inverse femtobarn of data collected with the D0 detector at the Fermilab Tevatr…

cs.DS20096 cited

Nonclairvoyant Speed Scaling for Flow and Energy

Ho-Leung Chan, Jeff Edmonds, Tak-Wah Lam +3

We study online nonclairvoyant speed scaling to minimize total flow time plus energy. We first consider the traditional model where the power function is P (s) = s\^\propto. We giv…