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COMPUTATIONAL PARTICLE-PHYSICS

  • Computational particle physics
  • Branch of physics

    science, theoretical and experimental particle physics and mathematics. Like computational chemistry or computational biology, it includes the methods and

    Computational particle physics

    Computational_particle_physics

  • Computational physics
  • Numerical simulations of physical problems via computers

    Computational physics is the study and implementation of numerical analysis to solve problems in physics. Historically, computational physics was the

    Computational physics

    Computational physics

    Computational_physics

  • List of open-source software for mathematics
  • in Computational Algebra). Unlike MAXIMA and Axiom, GAP is a system for computational discrete algebra with particular emphasis on computational group

    List of open-source software for mathematics

    List_of_open-source_software_for_mathematics

  • Parton (particle physics)
  • Model of hadrons

    In particle physics, the parton model is a model of hadrons, such as protons and neutrons, proposed by Richard Feynman. It is useful for interpreting the

    Parton (particle physics)

    Parton_(particle_physics)

  • List of computational physics software
  • fluid dynamics, astrophysics, particle physics, and Monte Carlo simulations. High-performance computing List of computational chemistry software List of

    List of computational physics software

    List_of_computational_physics_software

  • List of computational fluid dynamics software
  • methods and more. Physics portal Ansys CFD in buildings Combustion models for CFD Computational fluid dynamics List of computational physics software Lists

    List of computational fluid dynamics software

    List_of_computational_fluid_dynamics_software

  • Particle
  • Small localized object

    formation. In computational physics, N-body simulations (also called N-particle simulations) are simulations of dynamical systems of particles under the influence

    Particle

    Particle

    Particle

  • Standard Model
  • Theory of forces and subatomic particles

    The Standard Model of particle physics is the theory describing three of the four known fundamental forces (electromagnetic, weak and strong interactions

    Standard Model

    Standard Model

    Standard_Model

  • Particle physics
  • Study of subatomic particles and forces

    Particle physics or high-energy physics is the study of fundamental particles and forces that constitute matter and radiation. The field also studies

    Particle physics

    Particle physics

    Particle_physics

  • Centre for High Energy Physics
  • National laboratory at the University of Punjab

    advancement of particle physics but began conducting research on supercomputing when it started its teaching program in computational physics in 2004. CHEP

    Centre for High Energy Physics

    Centre_for_High_Energy_Physics

  • Collaborative Computational Project Q
  • Computational particle physics project

    other computational research projects. "CCPQ Collaborative Computational Project Q - Quantum Dynamics in Atomic, Molecular and Optical Physics". www.ccpq

    Collaborative Computational Project Q

    Collaborative Computational Project Q

    Collaborative_Computational_Project_Q

  • Computational thinking
  • Set of problem-solving methods

    Computational thinking (CT) refers to the thought processes involved in formulating problems so their solutions can be represented as computational steps

    Computational thinking

    Computational_thinking

  • Computational science
  • Specialist field of computer science

    mathematics Computational mechanics Computational neuroscience Computational particle physics Computational physics Computational sociology Computational statistics

    Computational science

    Computational_science

  • Computational engineering
  • Field of algorithmic training

    Computational engineering is an emerging discipline that deals with the development and application of computational models for engineering, known as computational

    Computational engineering

    Computational engineering

    Computational_engineering

  • Branches of physics
  • Scientific subjects

    physics, and molecular physics; optics and acoustics; condensed matter physics; high-energy particle physics and nuclear physics; and chaos theory and

    Branches of physics

    Branches of physics

    Branches_of_physics

  • Particle filter
  • Type of Monte Carlo algorithms for signal processing and statistical inference

    recently by Jack H. Hetherington in 1984. In computational physics, these Feynman-Kac type path particle integration methods are also used in Quantum

    Particle filter

    Particle_filter

  • List of plasma physics software
  • List of software used in plasma physics and magnetohydrodynamics simulations

    Physics portal Accelerator physics codes List of computational physics software List of computational fluid dynamics software List of computational chemistry

    List of plasma physics software

    List of plasma physics software

    List_of_plasma_physics_software

  • Les Houches Accords
  • The Les Houches Accords are agreements between particle physicists to standardize the interface between the matrix element programs and the event generators

    Les Houches Accords

    Les_Houches_Accords

  • List of free and open-source software packages
  • Blender geared toward mechanical engineers OpenFOAM – software used for computational fluid dynamics (or CFD) FlightGear – atmospheric and orbital flight

    List of free and open-source software packages

    List_of_free_and_open-source_software_packages

  • Computational fluid dynamics
  • Analysis and solving of problems that involve fluid flows

    Computational fluid dynamics (CFD) is a branch of both fluid mechanics and computational physics that uses numerical analysis and data structures to analyze

    Computational fluid dynamics

    Computational fluid dynamics

    Computational_fluid_dynamics

  • Physics
  • Scientific field of study

    on mathematics, like computation have made computational physics an active area of research. Ontology is a prerequisite for physics, but not for mathematics

    Physics

    Physics

  • Plasma (physics)
  • State of matter

    degree of ionization. It thus consists of a significant portion of charged particles (ions and/or electrons). While rarely encountered on Earth, it is estimated

    Plasma (physics)

    Plasma (physics)

    Plasma_(physics)

  • STARlight
  • Computer simulation event generator

    Nystrand, Joakim (2005). "Physics of ultra-peripheral relativistic nuclear collisions". Annual Review of Nuclear and Particle Science. 55 (1): 271–310

    STARlight

    STARlight

  • Smoothed-particle hydrodynamics
  • Method of hydrodynamics simulation

    Smoothed-particle hydrodynamics (SPH) is a computational method used for simulating the mechanics of continuum media, such as solid mechanics and fluid

    Smoothed-particle hydrodynamics

    Smoothed-particle hydrodynamics

    Smoothed-particle_hydrodynamics

  • Automatic calculation of particle interaction or decay
  • Application of computational physics

    The automatic calculation of particle interaction or decay is part of the computational particle physics branch. It refers to computing tools that help

    Automatic calculation of particle interaction or decay

    Automatic_calculation_of_particle_interaction_or_decay

  • List of unsolved problems in physics
  • L. Workman et al. (Particle Data Group), Prog.Theor.Exp.Phys. 2022, 083C01 (2022), The Review of Particle Physics (2022), Particle listing – Proton, page

    List of unsolved problems in physics

    List_of_unsolved_problems_in_physics

  • Outline of physics
  • Overview of and topical guide to physics

    Nuclear physics – field of physics that studies the building blocks and interactions of atomic nuclei. Particle physics – the branch of physics that studies

    Outline of physics

    Outline_of_physics

  • Quantum mechanics
  • Description of physical properties at the atomic and subatomic scale

    doing so is string theory, which posits that the point-like particles of particle physics are replaced by one-dimensional objects called strings. String

    Quantum mechanics

    Quantum mechanics

    Quantum_mechanics

  • Timeline of atomic and subatomic physics
  • atomic and subatomic physics, including particle physics. 430 BCE Democritus speculates about fundamental indivisible particles—calls them "atoms" 2nd

    Timeline of atomic and subatomic physics

    Timeline_of_atomic_and_subatomic_physics

  • International Journal of Modern Physics
  • Academic journal

    International Journal of Modern Physics C was established in 1990. It covers specifically computational physics, physical computation and related subjects, with

    International Journal of Modern Physics

    International_Journal_of_Modern_Physics

  • Particle-in-cell
  • Mathematical technique used to solve a certain class of partial differential equations

    In plasma physics, the particle-in-cell (PIC) method refers to a technique used to solve a certain class of partial differential equations. In this method

    Particle-in-cell

    Particle-in-cell

  • Timeline of particle discoveries
  • Standard Model of particle physics that have so far been observed. The Standard Model is the most comprehensive existing model of particle behavior. All Standard

    Timeline of particle discoveries

    Timeline_of_particle_discoveries

  • Computational chemistry
  • Branch of chemistry

    Xiaoyue (2022-12-01). "Development of Computational Chemistry and Application of Computational Methods". Journal of Physics: Conference Series. 2386 (1) 012005

    Computational chemistry

    Computational chemistry

    Computational_chemistry

  • Monte Carlo method
  • Probabilistic problem-solving algorithm

    of computational physics software List of open-source Monte Carlo software List of software for Monte Carlo molecular modeling Mean-field particle methods –

    Monte Carlo method

    Monte Carlo method

    Monte_Carlo_method

  • History of subatomic physics
  • be composed of even smaller particles such as quarks. Particle physics studies these smallest particles; nuclear physics studies atomic nuclei and their

    History of subatomic physics

    History of subatomic physics

    History_of_subatomic_physics

  • Majorana fermion
  • Fermion that is its own antiparticle

    In particle physics a Majorana fermion (/maɪəˈrɑːnə/) or Majorana particle is a fermion that is its own antiparticle. They were hypothesised by Ettore

    Majorana fermion

    Majorana fermion

    Majorana_fermion

  • List of physics journals
  • in Optics Computational Materials Science Computer Physics Communications International Journal of Modern Physics C (computational physics, physical computations)

    List of physics journals

    List_of_physics_journals

  • Digital physics
  • Idea that the universe is fundamentally computational or informational

    informational or computational in character: that physical reality is either the output of a computer program or is itself a computational process. This

    Digital physics

    Digital_physics

  • Monte Carlo N-Particle Transport Code
  • Software package for simulating nuclear processes

    by the Monte Carlo method. Monte Carlo methods for particle transport have been driving computational developments since the beginning of modern computers;

    Monte Carlo N-Particle Transport Code

    Monte_Carlo_N-Particle_Transport_Code

  • Event generator
  • Software for simulating particle physics events

    that generate simulated high-energy particle physics events. They randomly generate events as those produced in particle accelerators, collider experiments

    Event generator

    Event_generator

  • Lagrangian particle tracking
  • Technique in computational fluid dynamics

    resulting particle paths allow for the study of turbulent structures, transport phenomena, and time-resolved Lagrangian statistics. In computational fluid

    Lagrangian particle tracking

    Lagrangian_particle_tracking

  • Cross section (physics)
  • Probability of a given process occurring in a particle collision

    In physics, the cross section is a measure related to the probability that a specific process will take place in a collision of two particles. For example

    Cross section (physics)

    Cross_section_(physics)

  • CompHEP
  • High energy physics computation software package

    a software package for automatic computations in high energy physics from Lagrangians to collision events or particle decays. CompHEP is based on quantum

    CompHEP

    CompHEP

    CompHEP

  • Axion
  • Hypothetical elementary particle

    An axion (/ˈæksiɒn/) is a hypothetical elementary particle originally theorized in 1978 independently by Frank Wilczek and Steven Weinberg as the Goldstone

    Axion

    Axion

  • Computational materials science
  • Subfield of materials science

    and exploring materials theories. It is analogous to computational chemistry and computational biology as an increasingly important subfield of materials

    Computational materials science

    Computational_materials_science

  • Particle mesh
  • Particle Mesh (PM) is a computational method for determining the forces in a system of particles. These particles could be atoms, stars, or fluid components

    Particle mesh

    Particle_mesh

  • Computational astrophysics
  • Methods and computing tools developed and used in astrophysics research

    Computational astrophysics refers to the methods and computing tools developed and used in astrophysics research. Like computational chemistry or computational

    Computational astrophysics

    Computational astrophysics

    Computational_astrophysics

  • Particle system
  • Technique in game physics, motion graphics and computer graphics

    A particle system is a technique in game physics, motion graphics, and computer graphics that uses many minute sprites, 3D models, or other graphic objects

    Particle system

    Particle system

    Particle_system

  • HEPnet
  • HEPnet or the High-Energy Physics Network is[citation needed] a telecommunications network for researchers in high-energy physics. It originated in the United

    HEPnet

    HEPnet

  • Mohammad Sajjad Alam
  • Indian-born American physicist (1947–2022)

    American particle physicist. His work focused on particle physics and computational physics. He played a significant role in several major particle physics experiments

    Mohammad Sajjad Alam

    Mohammad_Sajjad_Alam

  • A New Kind of Science
  • Book by Stephen Wolfram

    all these computational systems and document what they do. He further argues that this study should become a new branch of science, like physics or chemistry

    A New Kind of Science

    A_New_Kind_of_Science

  • Timeline of computational physics
  • Potential Theory." J. Computational Physics Vol. 60, pp. 187–207. L. Greengard and V. Rokhlin, "A fast algorithm for particle simulations," J. Comput

    Timeline of computational physics

    Timeline_of_computational_physics

  • John Paul Verboncoeur
  • American electrical engineer and plasma physicist

    computational plasma physics and plasma device applications. Verboncoeur is the author and coauthor of the MSU (formerly Berkeley) suite of particle-in-cell

    John Paul Verboncoeur

    John_Paul_Verboncoeur

  • String theory
  • Theory of subatomic structure

    In physics, string theory is a theoretical framework in which the point-like particles of particle physics are replaced by one-dimensional objects called

    String theory

    String_theory

  • Limits of computation
  • number of particles and particle modes. In practice, it is a stronger bound than the Bekenstein bound. Bremermann's limit is the maximum computational speed

    Limits of computation

    Limits_of_computation

  • Sakurai Prize
  • Award in theoretical particle physics

    The J. J. Sakurai Prize for Theoretical Particle Physics, also commonly referred to as just the Sakurai Prize, is a prize awarded by the American Physical

    Sakurai Prize

    Sakurai_Prize

  • Field (physics)
  • Physical quantities taking values at each point in space and time

    modern physics. Richard Feynman said, "The fact that the electromagnetic field can possess momentum and energy makes it very real, and [...] a particle makes

    Field (physics)

    Field (physics)

    Field_(physics)

  • Quantum computing
  • Computer hardware technology that uses quantum mechanics

    The "classical" in classical computation thus refers to the computational model, not to whether the microscopic physics of the hardware is ultimately

    Quantum computing

    Quantum computing

    Quantum_computing

  • Many-body problem
  • Problem in physics and quantum mechanics

    deriving the behavior of multi-particle systems using fundamental quantum-mechanical principles. The goal of many-body physics is to find new principles to

    Many-body problem

    Many-body_problem

  • History of physics
  • Historical development of physics

    powerful particle accelerators. Outside particle physics, significant advances of the time were: the invention of the laser (1964 Nobel Prize in Physics); the

    History of physics

    History_of_physics

  • Electron
  • Elementary particle with negative charge

    nuclear reactions) is a subatomic particle whose electric charge is negative one elementary charge. It is an elementary particle contained in the matter that

    Electron

    Electron

    Electron

  • Relativistic quantum mechanics
  • Quantum mechanics taking into account particles near or at the speed of light

    application in high-energy physics, particle physics and accelerator physics, as well as atomic physics, chemistry and condensed matter physics. Non-relativistic

    Relativistic quantum mechanics

    Relativistic_quantum_mechanics

  • List of American Physical Society prizes and awards
  • excellence and conduct; topics include outstanding leadership, computational physics, lasers, mathematics, and more. A B C D E F G H I K L M O P R S

    List of American Physical Society prizes and awards

    List_of_American_Physical_Society_prizes_and_awards

  • VSim
  • VSim is a cross-platform computational framework for multi-physics, compatible with Windows, Linux, and macOS. It includes VSimComposer, a GUI for visual

    VSim

    VSim

  • Quantum chromodynamics
  • Theory of the strong nuclear interactions

    theoretical physics, quantum chromodynamics (QCD) is the study of the strong interaction between quarks mediated by gluons. Quarks are fundamental particles that

    Quantum chromodynamics

    Quantum chromodynamics

    Quantum_chromodynamics

  • FLUKA
  • and transport of particles and nuclei in matter. FLUKA has many applications in particle physics, high energy experimental physics and engineering, shielding

    FLUKA

    FLUKA

  • Dissipative particle dynamics
  • thus reducing the computational complexity. The total non-bonded force acting on a DPD particle i is given by a sum over all particles j that lie within

    Dissipative particle dynamics

    Dissipative_particle_dynamics

  • Discrete element method
  • Numerical method

    number of particles or length of the simulation. An alternative to treating all particles separately is to average the physics across many particles and thereby

    Discrete element method

    Discrete_element_method

  • Xi (letter)
  • Fourteenth letter in the Greek alphabet

    stability theory The x-coordinate of computational space as used in computational fluid dynamics Potential difference in physics (in volts) The radial integral

    Xi (letter)

    Xi_(letter)

  • Particle method
  • Class of numerical methods in scientific computing

    Particle methods is a widely used class of numerical algorithms in scientific computing. Its application ranges from computational fluid dynamics (CFD)

    Particle method

    Particle_method

  • Stephen Wolfram
  • British-American scientist (born 1959)

    Institute of Technology the following year, where he received a PhD in particle physics in 1980. Wolfram's thesis committee was composed of Richard Feynman

    Stephen Wolfram

    Stephen Wolfram

    Stephen_Wolfram

  • Particle physics and representation theory
  • Physics-mathematics connection

    between particle physics and representation theory, as first noted in the 1930s by Eugene Wigner. It links the properties of elementary particles to the

    Particle physics and representation theory

    Particle physics and representation theory

    Particle_physics_and_representation_theory

  • Department of Physics, Durham University
  • Academic department of Durham University

    two research institutes: the Institute for Particle Physics Phenomenology and the Institute for Computational Cosmology. In the 2023 and 2024 editions of

    Department of Physics, Durham University

    Department of Physics, Durham University

    Department_of_Physics,_Durham_University

  • NNPDF
  • Particle physics collaboration

    NNPDF Developer The NNPDF Collaboration Stable release 4.0 Type Particle physics Website nnpdf.mi.infn.it

    NNPDF

    NNPDF

    NNPDF

  • Work (physics)
  • Process of energy transfer to an object via force application through displacement

    and the resultant force on a particle. Computation of the scalar product of the force with the velocity of the particle evaluates the instantaneous power

    Work (physics)

    Work (physics)

    Work_(physics)

  • Computational mathematics
  • Area of mathematics

    involves in particular algorithm design, computational complexity, numerical methods and computer algebra. Computational mathematics refers also to the use

    Computational mathematics

    Computational mathematics

    Computational_mathematics

  • Atomic, molecular, and optical physics
  • Study of matter-light interactions at small scales

    atomic nuclei like particle accelerators, AMO physicists tend to be more interested in techniques in spectroscopy. Within AMO physics, many are interested

    Atomic, molecular, and optical physics

    Atomic,_molecular,_and_optical_physics

  • Timeline of fundamental physics discoveries
  • Abraham Pais and Sam Treiman: Introduction of the Standard Model of particle physics term 1977 – Bottom quark found 1977 – Anderson localization recognized

    Timeline of fundamental physics discoveries

    Timeline_of_fundamental_physics_discoveries

  • Computational intelligence
  • Computer system simulating intelligence

    Recognized journals include Computational Intelligence, International Journal of Computational Intelligence Systems, Applied Computational Intelligence and Soft

    Computational intelligence

    Computational_intelligence

  • Statistical mechanics
  • Physics of many interacting particles

    are important in computational physics, physical chemistry, and related fields, and have diverse applications including medical physics, where they are

    Statistical mechanics

    Statistical_mechanics

  • Glueball
  • Hypothetical particle composed of gluons

    In particle physics, a glueball (also gluonium, gluon-ball) is a hypothetical composite particle. It consists solely of gluons, without valence quarks

    Glueball

    Glueball

    Glueball

  • Geant4
  • Scientific software for particle physics

    nature, Geant4 is well suited for development of computational tools for analysing interactions of particle with matter in many areas. These include: Space

    Geant4

    Geant4

    Geant4

  • Quantum entanglement
  • Physics phenomenon

    quantum state of each particle in a group cannot be described independently of the state of the others, even when the particles are separated by a large

    Quantum entanglement

    Quantum entanglement

    Quantum_entanglement

  • Cryogenic particle detector
  • Class of scientific instruments

    radiation.[1] Later, particle physics and cosmology motivated cryogenic detector development for sensing known and predicted particles such as neutrinos

    Cryogenic particle detector

    Cryogenic_particle_detector

  • N-body problem
  • Problem in physics and celestial mechanics

    turbulent collisions of hydrodynamically-interacting particles". Journal of Computational Physics. 225 (1): 51–73. Bibcode:2007JCoPh.225...51A. doi:10

    N-body problem

    N-body_problem

  • Mechanics
  • Science concerned with physical bodies subjected to forces or displacements

    derive thermodynamic properties. Particle physics: the motion, structure, and behavior of fundamental particles Nuclear physics: the motion, structure, and

    Mechanics

    Mechanics

    Mechanics

  • Stopping power (particle radiation)
  • Retarding force acting on charged particles due to interactions with matter

    nuclear and materials physics, stopping power is the retarding force acting on charged particles, typically alpha and beta particles, due to interaction

    Stopping power (particle radiation)

    Stopping power (particle radiation)

    Stopping_power_(particle_radiation)

  • Solvay Conference
  • Belgium academic gatherings since 1911

    dynamics of biological computation" took place in April 2024. Hendrik Lorentz was chairman of the first Solvay Conference on Physics, held in Brussels from

    Solvay Conference

    Solvay Conference

    Solvay_Conference

  • Photon
  • Elementary particle or quantum of light

    Einstein's approach. In the Standard Model of particle physics, photons and other elementary particles are described as a necessary consequence of physical

    Photon

    Photon

  • Atomic nucleus
  • Core of an atom composed of nucleons

    difficult than for most other areas of particle physics. This is due to two reasons: In principle, the physics within a nucleus can be derived entirely

    Atomic nucleus

    Atomic nucleus

    Atomic_nucleus

  • Heat transfer physics
  • Branch of physics

    optical phonons or fluid particle vibrations) or transition dipole moments during electronic transitions. In heat transfer physics, these interaction kinetics

    Heat transfer physics

    Heat_transfer_physics

  • Outline of physical science
  • Hierarchical outline list of articles related to the physical sciences

    chemical physics – history of the branch of physics that studies chemical processes from the point of view of physics. History of computational physics – history

    Outline of physical science

    Outline of physical science

    Outline_of_physical_science

  • Accelerator physics codes
  • charged particle accelerator is a complex machine that takes elementary charged particles and accelerates them to very high energies. Accelerator physics is

    Accelerator physics codes

    Accelerator_physics_codes

  • Magic (quantum information)
  • Property of computational resources needed

    cannot perform any computation that classical computers cannot already do, making it essential for achieving quantum computational advantage. In 2024–2025

    Magic (quantum information)

    Magic_(quantum_information)

  • Exotic meson
  • Meson particles which do not fit into the quark model

    In particle physics, exotic mesons are mesons that have quantum numbers not possible in the quark model; some proposals for non-standard quark model mesons

    Exotic meson

    Exotic meson

    Exotic_meson

  • Mathematical physics
  • Branch of applied mathematics

    between mathematics and physics Theoretical, computational and philosophical physics Definition from the Journal of Mathematical Physics. "Archived copy". Archived

    Mathematical physics

    Mathematical_physics

  • Supersymmetry
  • Symmetry between bosons and fermions

    theoretical framework in physics that suggests the existence of a symmetry between particles with integer spin (bosons) and particles with half-integer spin

    Supersymmetry

    Supersymmetry

  • CFD-DEM
  • searching strategy,Journal of Computational Physics, 384: 151-169. Tsuji, Y.; Kawaguchi, T.; Tanaka, T. (1993). "Discrete particle simulation of two-dimensional

    CFD-DEM

    CFD-DEM

  • Landau Institute for Theoretical Physics
  • Russian research institution

    are: Mathematical physics Computational physics Nonlinear dynamics Condensed matter theory Nuclear and elementary particle physics Quantum field theory

    Landau Institute for Theoretical Physics

    Landau Institute for Theoretical Physics

    Landau_Institute_for_Theoretical_Physics

  • Rarefied gas dynamics
  • Low-Density Gases

    determined by the velocity and position of each particle. Since it would be an impossible computational task in storing the very large volumes of information

    Rarefied gas dynamics

    Rarefied gas dynamics

    Rarefied_gas_dynamics

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