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20022026
most citedArray Programming with NumPy

23.6k citations

Showing 2014Show all

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cond-mat.stat-mech2014

Understanding and Designing Complex Systems: Response to "A framework for optimal high-level descriptions in science and engineering---preliminary report"

James P. Crutchfield, Ryan G. James, Sarah Marzen +1

We recount recent history behind building compact models of nonlinear, complex processes and identifying their relevant macroscopic patterns or "macrostates". We give a synopsis of…

astro-ph.SR2014★ 29 cited

Characterizing the Cool KOIs. VII. Refined Physical Properties of the Transiting Brown Dwarf LHS 6343 C

Benjamin T. Montet, John Asher Johnson, Philip S. Muirhead +8

We present an updated analysis of LHS 6343, a triple system in the Kepler field which consists of a brown dwarf transiting one member of a widely-separated M+M binary system. By an…

astro-ph.SR2014★ 103 cited

Super-elastic Collision of Large-scale Magnetized Plasmoids in The Heliosphere

Chenglong Shen, Yuming Wang, Shui Wang +7

Super-elastic collision is an abnormal collisional process, in which some particular mechanisms cause the kinetic energy of the system increasing. Most studies in this aspect focus…

quant-ph2014★ 49 cited

Optimizing for an arbitrary perfect entangler. II. Application

Michael H. Goerz, Giulia Gualdi, Daniel M. Reich +7

The difficulty of an optimization task in quantum information science depends on the proper mathematical expression of the physical target. Here we demonstrate the power of optimiz…

cond-mat.mtrl-sci2014★ 803 cited

van der Waals forces in density functional theory: The vdW-DF method

Kristian Berland, Valentino R. Cooper, Kyuho Lee +4

A density functional theory (DFT) that accounts for van der Waals (vdW) interactions in condensed matter, materials physics, chemistry, and biology is reviewed. The insights that l…

cond-mat.stat-mech2014★ 14 cited

Stochastic dynamics of collective modes for Brownian dipoles

Leticia F. Cugliandolo, Pierre-Michel Déjardin, Gustavo S. Lozano +1

The individual motion of a colloidal particle is described by an overdamped Langevin equation. When rotational degrees of freedom are relevant, these are described by a correspondi…