ScholarGate
Assistente

Comparar métodos

Examine os métodos selecionados lado a lado; as linhas que diferem ficam destacadas.

Perfil de Halo NFW×Método do Elemento de Matriz×Ajuste de Funções de Distribuição de Partons (PDF)×
ÁreaFísica de partículasFísica de partículasFísica de partículas
FamíliaProcess / pipelineProcess / pipelineProcess / pipeline
Ano de origem199719881969
Autor originalJulio Navarro, Carlos Frenk, Simon WhiteK. KondoJames Bjorken and collaborators
TipoHalo density modelProbability calculation frameworkQCD framework
Fonte seminalNavarro, J. F., Frenk, C. S., & White, S. D. M. (1997). A universal density profile from hierarchical clustering. The Astrophysical Journal, 490(2), 493. DOI ↗Kondo, K. (1988). Dynamical likelihood method for reconstruction of events produced by the top-quark pair in the lepton + jets channel at hadron colliders. Journal of the Physical Society of Japan, 57(12), 4126–4140. link ↗Bjorken, J. D. (1969). Asymptotic sum rules at infinite momentum. Physical Review, 179(5), 1547. DOI ↗
Outros nomesNFW profile, dark matter density profile, halo modelMEM, matrix element calculation, amplitude evaluationPDF, structure function, parton model
Relacionados333
ResumoThe Navarro-Frenk-White (NFW) profile is a widely-adopted density profile for dark matter halos emerging from cosmological simulations. It provides a simple parametric description of how dark matter density varies with distance from the halo center, essential for modeling galaxy cluster mass distributions, weak lensing, and dark matter annihilation signals.The Matrix Element Method (MEM) is a powerful analysis technique that leverages quantum field theory amplitudes to extract maximum physics information from individual events. By comparing observed detector signatures to predictions from matrix elements, MEM provides unbiased, model-independent measurements with excellent theoretical precision and sensitivity to new physics.Parton Distribution Function (PDF) fitting is the process of determining the probability distributions of quarks and gluons inside hadrons using high-energy collision data. PDFs are fundamental inputs to all hadron collider phenomenology, essential for predicting cross-sections, designing triggers, and interpreting new physics searches at the Large Hadron Collider.
ScholarGateConjunto de dados
  1. v1
  2. 3 Fontes
  3. PUBLISHED
  1. v1
  2. 3 Fontes
  3. PUBLISHED
  1. v1
  2. 3 Fontes
  3. PUBLISHED

Ir para a pesquisa Baixar slides

ScholarGateComparar métodos: NFW Halo Profile · Matrix Element Method · PDF Fitting. Recuperado em 2026-06-19 de https://scholargate.app/pt/compare