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Julio F. Navarro

Researcher at University of Victoria

Publications -  393
Citations -  79749

Julio F. Navarro is an academic researcher from University of Victoria. The author has contributed to research in topics: Galaxy & Dark matter. The author has an hindex of 113, co-authored 376 publications receiving 72998 citations. Previous affiliations of Julio F. Navarro include University of Massachusetts Amherst & Alfred P. Sloan Foundation.

Papers
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The Diversity and Similarity of Simulated Cold Dark Matter Halos

TL;DR: In this paper, the mass, velocity dispersion, and anisotropy profiles of Lambda$CDM halos were analyzed using a suite of N-body simulations of unprecedented numerical resolution.
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The statistics of Λ CDM halo concentrations

TL;DR: In this article, the authors used the Millennium Simulation (MS) to study the statistics of A cold dark matter (ACDM) halo concentrations at z = 0.5 and found that the average halo concentration declines monotonically with mass, up to the most massive objects that form in a ACDM universe.
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The diversity and similarity of simulated cold dark matter haloes

TL;DR: In this paper, the structure of CDM halos using a suite of N-body simulations of un-precedented numerical resolution is studied. But the results of the analysis are limited to a single dark matter halo using 4.4 billion particles, of which 1.1 billion end up within the virial radius.
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The Inner Structure of LambdaCDM Halos I: A Numerical Convergence Study

TL;DR: In this article, a comprehensive set of convergence tests are presented to explore the role of various numerical parameters on the equilibrium structure of a simulated dark matter halo, and two independent, state-of-the-art, multi-stepping, parallel N-body codes: PKDGRAV and GADGET.
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The Origin of Star Formation Gradients in Rich Galaxy Clusters

TL;DR: In this paper, the authors examine the origin of clustercentric gradients in the star formation rates and colors of rich cluster galaxies within the context of a simple model where clusters are built through the ongoing accretion of field galaxies.