35,995 research outputs found

    Combined 3D thinning and greedy algorithm to approximate realistic particles with corrected mechanical properties

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    The shape of irregular particles has significant influence on micro- and macro-scopic behavior of granular systems. This paper presents a combined 3D thinning and greedy set-covering algorithm to approximate realistic particles with a clump of overlapping spheres for discrete element method (DEM) simulations. First, the particle medial surface (or surface skeleton), from which all candidate (maximal inscribed) spheres can be generated, is computed by the topological 3D thinning. Then, the clump generation procedure is converted into a greedy set-covering (SCP) problem. To correct the mass distribution due to highly overlapped spheres inside the clump, linear programming (LP) is used to adjust the density of each component sphere, such that the aggregate properties mass, center of mass and inertia tensor are identical or close enough to the prototypical particle. In order to find the optimal approximation accuracy (volume coverage: ratio of clump's volume to the original particle's volume), particle flow of 3 different shapes in a rotating drum are conducted. It was observed that the dynamic angle of repose starts to converge for all particle shapes at 85% volume coverage (spheres per clump < 30), which implies the possible optimal resolution to capture the mechanical behavior of the system.Comment: 34 pages, 13 figure

    Institutions and Practices for Restoring and Maintaining Public Order

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    The implementation of a copyright protection reform in Sweden in April 2009 suddenly increased the risk of being caught and punished for illegal file sharing. This paper investigates the impact of the reform on illegal file sharing and music sales using a difference-in-differences approach with Norway and Finland as control groups. We find that the reform decreased Internet traffic by 16% and increased music sales by 36% during the first six months. Pirated music therefore seems to be a strong substitute to legal music. However, the reform effects disappeared almost completely after six months, likely because of the weak enforcement of the law

    An efficient quantum filter for multiphoton states

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    We propose a scheme for implementing a multipartite quantum filter that uses entangled photons as a resource. It is shown that the success probability for the 2-photon parity filter can be as high as 1/2, which is the highest that has so far been predicted without the help of universal two-qubit quantum gates. Furthermore, the required number of ancilla photons is the least of all current parity filter proposals. Remarkably, the quantum filter operates with probability 1/2 even in the N-photon case, irregardless of the number of photons in the input state.Comment: 8 pages, 2 figures, revised version, accepted for publication in J. Mod. Op

    Dynamically Spontaneous Symmetry Breaking and Masses of Lightest Nonet Scalar Mesons as Composite Higgs Bosons

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    Based on the (approximate) chiral symmetry of QCD Lagrangian and the bound state assumption of effective meson fields, a nonlinearly realized effective chiral Lagrangian for meson fields is obtained from integrating out the quark fields by using the new finite regularization method. As the new method preserves the symmetry principles of the original theory and meanwhile keeps the finite quadratic term given by a physically meaningful characteristic energy scale McM_c, it then leads to a dynamically spontaneous symmetry breaking in the effective chiral field theory. The gap equations are obtained as the conditions of minimal effective potential in the effective theory. The instanton effects are included via the induced interactions discovered by 't Hooft and found to play an important role in obtaining the physical solutions for the gap equations. The lightest nonet scalar mesons(σ\sigma, f0f_0, a0a_0 and κ\kappa) appearing as the chiral partners of the nonet pseudoscalar mesons are found to be composite Higgs bosons with masses below the chiral symmetry breaking scale Λχ1.2\Lambda_{\chi} \sim 1.2 GeV. In particular, the mass of the singlet scalar (or the σ\sigma) is found to be mσ677m_{\sigma} \simeq 677 MeV.Comment: 15 pages, Revtex, published version, Eur. Phys. J. C (2004) (DOI) 10.1140/epjcd/s2004-01-001-

    Vanishing Mean Oscillation Spaces Associated with Operators Satisfying Davies-Gaffney Estimates

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    Let (X,d,μ)(\mathcal{X}, d, \mu) be a metric measure space, LL a linear operator which has a bounded HH_\infty functional calculus and satisfies the Davies-Gaffney estimate, Φ\Phi a concave function on (0,)(0,\infty) of critical lower type pΦ(0,1]p_\Phi^-\in(0,1] and ρ(t)t1/Φ1(t1)\rho(t)\equiv t^{-1}/\Phi^{-1}(t^{-1}) for all t(0,)t\in(0,\infty). In this paper, the authors introduce the generalized VMO space VMOρ,L(X){\mathrm {VMO}}_{\rho,L}({\mathcal X}) associated with LL, and establish its characterization via the tent space. As applications, the authors show that (VMOρ,L(X))=BΦ,L(X)({\mathrm {VMO}}_{\rho,L}({\mathcal X}))^*=B_{\Phi,L^*}({\mathcal X}), where LL^* denotes the adjoint operator of LL in L2(X)L^2({\mathcal X}) and BΦ,L(X)B_{\Phi,L^*}({\mathcal X}) the Banach completion of the Orlicz-Hardy space HΦ,L(X)H_{\Phi,L^*}({\mathcal X}).Comment: 40 pages, Kyoto J. Math. (to appear
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