activity
20042008
most citedAn ensemble approach to the analysis of weighted networks

78 citations · 80 across the 3 of their papers we have counts for

collaborators

8 papers

physics.data-an20082 cited

Applying weighted network measures to microarray distance matrices

S. E. Ahnert, D. Garlaschelli, T. M. A. Fink +1

In recent work we presented a new approach to the analysis of weighted networks, by providing a straightforward generalization of any network measure defined on unweighted networks…

q-bio.GN2006

How much non-coding DNA do eukaryotes require?

Sebastian Ahnert, Thomas Fink, Andrei Zinovyev

Despite tremendous advances in the field of genomics, the amount and function of the large non-coding part of the genome in higher organisms remains poorly understood. Here we repo…

cond-mat.stat-mech200678 cited

An ensemble approach to the analysis of weighted networks

S. E. Ahnert, D. Garlaschelli, T. M. Fink +1

We present a new approach to the calculation of measures in weighted networks, based on the translation of a weighted network into an ensemble of edges. This leads to a straightfor…

quant-ph2005

All possible bipartite positive-operator-value measurements of two-photon polarization states

S. E. Ahnert, M. C. Payne

Here we propose an implementation of all possible Positive Operator Value Measures (POVMs) of two-photon polarization states. POVMs are the most general class of quantum measuremen…

quant-ph2005

Reply to "Comment on 'A linear optics implementation of weak values in Hardy's paradox'"

S. E. Ahnert, M. C. Payne

The comment by Lundeen et al. contains two criticisms of our proposal. While we agree that the state-preparation procedure could be replaced by a simpler setup as proposed by the a…

quant-ph2004

Linear optics implementation of weak values in Hardy's paradox

S. E. Ahnert, M. C. Payne

We propose an experimental setup for the implementation of weak measurements in the context of the gedankenexperiment known as Hardy's Paradox. As Aharonov et al. showed, these wea…