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EFFECTIVE MASS-SOLID-STATE-PHYSICS

  • Effective mass (solid-state physics)
  • Mass of a particle when interacting with other particles

    In solid state physics, a particle's effective mass (often denoted m ∗ {\textstyle m^{*}} ) is the mass that it seems to have when responding to forces

    Effective mass (solid-state physics)

    Effective_mass_(solid-state_physics)

  • Effective mass
  • Topics referred to by the same term

    Effective mass may refer to: Effective mass (solid-state physics), a property of an excitation in a crystal analogous to the mass of a free particle Effective

    Effective mass

    Effective_mass

  • Effective theory
  • Type of approximation to an underlying physical theory

    described as "effective", as in being the "low energy limit" of an as-yet unknown theory of everything. Effective mass (solid-state physics) Emergence Empirism

    Effective theory

    Effective_theory

  • Electron hole
  • Conceptual opposite of an electron

    thinking. Band gap Effective mass (solid-state physics) Electrical resistivity and conductivity Ashcroft and Mermin (1976). Solid State Physics (1st ed.). Holt

    Electron hole

    Electron hole

    Electron_hole

  • Mass
  • Amount of matter present in an object

    Mass versus weight Electromagnetic mass Effective mass (spring–mass system) Effective mass (solid-state physics) Extension (metaphysics) International

    Mass

    Mass

    Mass

  • Solid-state battery
  • Battery with solid electrodes and a solid electrolyte

    A solid-state battery (SSB) is an electrical battery that uses a solid electrolyte to conduct ions between the electrodes, instead of the liquid or gel

    Solid-state battery

    Solid-state battery

    Solid-state_battery

  • Density of states
  • Number of available physical states per energy unit

    it can be observed as a strong near-field localization. Effective mass (solid-state physics) Band structure k·p perturbation theory Semiconductor Electrical

    Density of states

    Density of states

    Density_of_states

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

    non-quantum theory of gravity History of solid-state physics – history of the study of rigid matter, or solids, through methods such as quantum mechanics

    Outline of physics

    Outline_of_physics

  • Physics
  • Scientific field of study

    in physics often enable new technologies. For example, advances in the understanding of electromagnetism, solid-state physics, and nuclear physics led

    Physics

    Physics

  • Critical mass
  • Smallest amount of fissile material needed to sustain a nuclear reaction

    temperature, or neutron population. A numerical measure of a critical mass depends on the effective neutron multiplication factor k, the average number of neutrons

    Critical mass

    Critical mass

    Critical_mass

  • Thermal effective mass
  • deviations from the heat capacity of a free electron gas. Kittel, Charles (1996). Introduction to Solid State Physics, 7th Ed. John Wiley and Sons, Inc. v t e

    Thermal effective mass

    Thermal_effective_mass

  • K·p perturbation theory
  • Solid-state physics model

    In solid-state physics, the k·p perturbation theory is an approximated semi-empirical approach for calculating the band structure (particularly effective

    K·p perturbation theory

    K·p_perturbation_theory

  • Glossary of physics
  • through tubes. Snell's law solar cell solid solid mechanics solid-state physics solubility The tendency of a solid, liquid, or gaseous chemical substance

    Glossary of physics

    Glossary_of_physics

  • Index of physics articles (E)
  • Effective input noise temperature Effective mass (solid-state physics) Effective medium model Effective nuclear charge Effective potential Effective radiated

    Index of physics articles (E)

    Index_of_physics_articles_(E)

  • Jahn–Teller effect
  • Mechanism of spontaneous symmetry breaking

    spectroscopy, stereochemistry, crystal chemistry, molecular and solid-state physics, and materials science. The effect is named for Hermann Arthur Jahn

    Jahn–Teller effect

    Jahn–Teller_effect

  • Cyclotron motion
  • Motion of charged particles

    Kittel, Charles. Introduction to Solid State Physics, 8th edition. pp. 153 Ashcroft and Mermin. Solid State Physics. pp12 Landau, L. (1930). "Diamagnetismus

    Cyclotron motion

    Cyclotron motion

    Cyclotron_motion

  • Materials science
  • Research of materials

    involves the study and use of quantum chemistry or quantum physics. Solid-state physics, solid-state chemistry and physical chemistry are also involved in

    Materials science

    Materials science

    Materials_science

  • Semiconductor
  • Material of moderate electrical conductivity

    1876. A unified explanation of these phenomena required a theory of solid-state physics, which developed greatly in the first half of the 20th century. In

    Semiconductor

    Semiconductor

  • Quasiparticle
  • Concept in condensed matter physics

    Electronic Structure of Solids. Cambridge University Press. pp. 65–69. ISBN 978-0-521-52339-4. Ashcroft; Mermin (1976). Solid State Physics (1st ed.). Holt,

    Quasiparticle

    Quasiparticle

  • Heat transfer physics
  • Branch of physics

    Daryoosh; Shakouri, Ali (2016-09-01). "Nanoscale solid-state cooling: a review". Reports on Progress in Physics. 79 (9) 095901. doi:10.1088/0034-4885/79/9/095901

    Heat transfer physics

    Heat_transfer_physics

  • Heavy fermion material
  • Intermetallic compound with 4f and 5f electrons in unfilled electron bands

    compounds behave as if they had an effective mass up to 1,000 times the free particle mass. This large effective mass is also reflected in a large contribution

    Heavy fermion material

    Heavy_fermion_material

  • Plasma oscillation
  • Rapid oscillations of electron density

    PMC 1085653. PMID 16587379. Ashcroft, Neil; Mermin, N. David (1976). Solid State Physics. New York: Holt, Rinehart and Winston. p. 19. ISBN 978-0-03-083993-1

    Plasma oscillation

    Plasma_oscillation

  • Equation of state
  • Equation describing a state of matter under a given set of conditions

    In physics and chemistry, an equation of state is a thermodynamic equation relating state variables, which describe the state of matter under a given set

    Equation of state

    Equation of state

    Equation_of_state

  • Electron mobility
  • Quantity in solid-state physics

    In solid-state physics, the electron mobility characterizes how quickly an electron can move through a metal or semiconductor when pushed or pulled by

    Electron mobility

    Electron_mobility

  • Neutrino
  • Elementary particle with extremely low mass

    the solid-state detectors in use for direct detection of dark matter experiments, are some of the most sensitive particle detectors in modern physics, boasting

    Neutrino

    Neutrino

    Neutrino

  • Dark matter
  • Hypothetical invisible cosmic material

    Unsolved problem in physics What is dark matter? How was it generated? More unsolved problems in physics In astronomy and cosmology, dark matter is an

    Dark matter

    Dark matter

    Dark_matter

  • Soil mechanics
  • Branch of soil physics and applied mechanics that describes the behavior of soils

    is a branch of soil physics and applied mechanics that describes the behavior of soils. It differs from fluid mechanics and solid mechanics in the sense

    Soil mechanics

    Soil mechanics

    Soil_mechanics

  • Bloch's theorem
  • Fundamental theorem in condensed matter physics

    Introduction to Solid State Physics. New York: Wiley. ISBN 0-471-14286-7. Ziman, J. M. (1972). Principles of the theory of solids (2nd ed.). Cambridge

    Bloch's theorem

    Bloch's theorem

    Bloch's_theorem

  • Mass balance
  • Analysis of the flows of mass into and out of a physical system

    In physics, a mass balance, also called a material balance, is an application of conservation of mass to the analysis of physical systems. By accounting

    Mass balance

    Mass_balance

  • Pseudopotential
  • Concept in physics

    In physics, a pseudopotential or effective potential is used as an approximation for the simplified description of complex systems. Applications include

    Pseudopotential

    Pseudopotential

    Pseudopotential

  • Mass action law (electronics)
  • Equation in solid-state physics

    In electronics and semiconductor physics, the law of mass action relates the concentrations of free electrons and electron holes under thermal equilibrium

    Mass action law (electronics)

    Mass_action_law_(electronics)

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

    are at a constant velocity. History of solid state physics – history of the study of rigid matter, or solids, through methods such as quantum mechanics

    Outline of physical science

    Outline of physical science

    Outline_of_physical_science

  • Indium gallium arsenide
  • Alloy

    "Optical pumping and the valence-band light-hole effective mass in GaxIn1−xAsyP1−y (y≃2.2x)". Applied Physics Letters. 38 (6). AIP Publishing: 450–452. doi:10

    Indium gallium arsenide

    Indium_gallium_arsenide

  • Index of physics articles (S)
  • Solid Solid-state ionics Solid-state laser Solid-state nuclear magnetic resonance Solid-state nuclear track detector Solid-state physics Solid State Communications

    Index of physics articles (S)

    Index_of_physics_articles_(S)

  • Lennard-Jones potential
  • Model of intermolecular interactions

    Lennard-Jones potential is sometimes called the Mie− Grüneisen potential in solid-state physics. In 1924, the year that Lennard-Jones received his PhD from Cambridge

    Lennard-Jones potential

    Lennard-Jones potential

    Lennard-Jones_potential

  • Cloud physics
  • Study of the physical processes in atmospheric clouds

    Cloud physics is the study of the physical processes that lead to the formation, evolution and impacts of atmospheric clouds, including precipitation

    Cloud physics

    Cloud physics

    Cloud_physics

  • Aeroelasticity
  • Interactions among inertial, elastic, and aerodynamic forces

    Aeroelasticity is the branch of physics and engineering studying the interactions between the inertial, elastic, and aerodynamic forces occurring while

    Aeroelasticity

    Aeroelasticity

    Aeroelasticity

  • Frank F. Fang
  • Chinese-American solid-state physicist

    Applied Physics. 41 (4): 1825–1831. Bibcode:1970JAP....41.1825F. doi:10.1063/1.1659111. Fang, F. F.; Fowler, A. B.; Hartstein, A. (1977). "Effective mass and

    Frank F. Fang

    Frank_F._Fang

  • Antimatter propulsion spacecraft
  • Rockets using antimatter as their power source

    "Evaluation of solid-core thermal antimatter propulsion concepts". Acta Astronautica. 191 (February 2022). PlasmaPotential - Physics Consulting and Research

    Antimatter propulsion spacecraft

    Antimatter propulsion spacecraft

    Antimatter_propulsion_spacecraft

  • Metallic hydrogen
  • Phase of hydrogen

    between the liquid and solid state, which could be metastably stabilized down to low temperature and enter a supersolid state. In 1968, Neil Ashcroft

    Metallic hydrogen

    Metallic_hydrogen

  • Composite fermion
  • Topological bound state of an electron

    gauge transformation. At the mean field approximation the physics of free fermions in an effective field is recovered. Perturbation theory at the level of

    Composite fermion

    Composite_fermion

  • Brane
  • Extended physical object in string theory

    through spacetime according to the rules of quantum mechanics. They have mass and can have other attributes such as charge. Mathematically, branes can

    Brane

    Brane

  • Backhand English
  • long pivot lengths, but solid-core carbon-fiber shafts can have end mass and pivot lengths like traditional wood. The effective pivot length changes with

    Backhand English

    Backhand_English

  • Two-dimensional electron gas
  • Scientific model in solid-state physics

    A two-dimensional electron gas (2DEG) is a scientific model in solid-state physics. It is an electron gas that is free to move in two dimensions, but

    Two-dimensional electron gas

    Two-dimensional_electron_gas

  • Elasticity (physics)
  • Physical property when materials or objects return to original shape after deformation

    In a given isotropic solid, with known theoretical elasticity for the bulk material in terms of Young's modulus, the effective elasticity will be governed

    Elasticity (physics)

    Elasticity_(physics)

  • Crystal momentum
  • Quantum-mechanical vector property in solid-state physics

    In solid-state physics, crystal momentum or quasimomentum is a momentum-like vector associated with electrons in a crystal lattice. It is defined by the

    Crystal momentum

    Crystal momentum

    Crystal_momentum

  • Poromechanics
  • Poromechanics is a branch of physics and specifically continuum mechanics that studies the behavior of fluid-saturated porous media. A porous medium or

    Poromechanics

    Poromechanics

    Poromechanics

  • Electronic specific heat
  • Heat capacity of an electron gas

    In solid state physics the electronic specific heat, sometimes called the electron heat capacity, is the specific heat of an electron gas. Heat is transported

    Electronic specific heat

    Electronic_specific_heat

  • Quantum well
  • Concept in quantum mechanics

    states. Quantum wells and quantum well devices are a subfield of solid-state physics that is still extensively studied and researched today. The theory

    Quantum well

    Quantum well

    Quantum_well

  • Renormalization
  • Method in physics used to deal with infinities

    to renormalize the mass and fields appearing in the original Lagrangian. This is the dominant method used in theoretical physics to treat these divergent

    Renormalization

    Renormalization

    Renormalization

  • Higgs boson
  • Elementary particle involved with rest mass

    He also drew attention to well-known effects in solid state physics where an electron's effective mass can be much greater than usual in the presence of

    Higgs boson

    Higgs boson

    Higgs_boson

  • Isotopes of titanium
  • Naimi, S. (2021). "The AME 2020 atomic mass evaluation (II). Tables, graphs and references*". Chinese Physics C. 45 (3) 030003. doi:10.1088/1674-1137/abddaf

    Isotopes of titanium

    Isotopes_of_titanium

  • Self-energy
  • Energy quantum particles contribute to themselves

    self-energy represents the contribution to the particle's energy, or effective mass, due to interactions between the particle and its environment. In electrostatics

    Self-energy

    Self-energy

  • Tsiolkovsky rocket equation
  • Mathematical equation describing the motion of a rocket

    essentials of rocket flight physics in a single short equation. It also holds true for rocket-like reaction vehicles whenever the effective exhaust velocity is

    Tsiolkovsky rocket equation

    Tsiolkovsky rocket equation

    Tsiolkovsky_rocket_equation

  • Quantum chromodynamics
  • Theory of the strong nuclear interactions

    frustration effect. II. Ising spins on a square lattice". Journal of Physics C: Solid State Physics. 10 (18): 537. Bibcode:1977JPhC...10L.537V. doi:10.1088/0022-3719/10/18/008

    Quantum chromodynamics

    Quantum chromodynamics

    Quantum_chromodynamics

  • Exciton
  • Quasiparticle which is a bound state of an electron and an electron hole

    Turnbul (ed.). Theory of excitons, Solid state physics. Vol. 5. Academic. Liang, W Y (1970). "Excitons". Physics Education. 5 (125301): 226–228. Bibcode:1970PhyEd

    Exciton

    Exciton

    Exciton

  • Magnetic nozzle
  • Space propulsion system using plasma

    expansion of a gas in a solid nozzle, and is the result of several intertwined phenomena, which ultimately rely on the large mass difference between electrons

    Magnetic nozzle

    Magnetic_nozzle

  • Glossary of engineering: M–Z
  • physics. Solid-state physics studies how the large-scale properties of solid materials result from their atomic-scale properties. Thus, solid-state physics

    Glossary of engineering: M–Z

    Glossary_of_engineering:_M–Z

  • Renormalization group
  • Concept in theoretical physics

    group was initially developed for particle physics applications but has since been applied to solid-state physics, fluid mechanics, physical cosmology, and

    Renormalization group

    Renormalization_group

  • Fermi gas
  • Physical model of non-interacting fermions

    Ashcroft and N. David Mermin, Solid State Physics (Harcourt: Orlando, 1976) Charles Kittel, Introduction to Solid State Physics, 1st ed. 1953 – 8th ed. 2005

    Fermi gas

    Fermi gas

    Fermi_gas

  • Archimedes' principle
  • Buoyancy principle in fluid dynamics

    of the fluid that the body displaces. Archimedes' principle is a law of physics fundamental to fluid mechanics. It was formulated by Archimedes of Syracuse

    Archimedes' principle

    Archimedes'_principle

  • Ridley–Watkins–Hilsum theory
  • In solid state physics the Ridley–Watkins–Hilsum theory (RWH) explains the mechanism by which differential negative resistance is developed in a bulk

    Ridley–Watkins–Hilsum theory

    Ridley–Watkins–Hilsum_theory

  • Quantum reflection
  • Physical phenomenon

    one can examine the specular reflection of a slow neutral atom from a solid state surface . Where one has an atom in a region of free space close to a

    Quantum reflection

    Quantum_reflection

  • Matter wave
  • Quantum mechanical waves describing matter

    than solid objects and they also differ from electromagnetic waves (light). Collective matter waves are used to model phenomena in solid state physics; standing

    Matter wave

    Matter_wave

  • Thermal conductivity and resistivity
  • Capacity of a material to conduct heat

    Fundamentals of heat and mass transfer (4th ed.), Wiley, pp. 50–51, ISBN 0-471-30460-3 Ashcroft, N. W.; Mermin, N. D. (1976). Solid State Physics. Saunders College

    Thermal conductivity and resistivity

    Thermal_conductivity_and_resistivity

  • Electronic band structure
  • Describes the range of energies of an electron within the solid

    In solid-state physics, the electronic band structure (or simply band structure) of a solid describes the range of energy levels that electrons may have

    Electronic band structure

    Electronic_band_structure

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

    precision tests of QED. R. Resnick; R. Eisberg (1985). Quantum Physics of Atoms, Molecules, Solids, Nuclei and Particles (2nd ed.). John Wiley & Sons. p. 684

    Field (physics)

    Field (physics)

    Field_(physics)

  • Dirac matter
  • Condensed matter system

    pairing and liquid helium-3. The effective theory of such systems is classified by a specific choice of the Dirac mass, the Dirac velocity, the gamma matrices

    Dirac matter

    Dirac_matter

  • Fermi liquid theory
  • Theoretical model in physics

    correlated quantum spin liquid Phillips, Philip (2008). Advanced Solid State Physics. Perseus Books. p. 224. ISBN 978-81-89938-16-1. Landau, L. D. (1957)

    Fermi liquid theory

    Fermi liquid theory

    Fermi_liquid_theory

  • Nuclear thermal rocket
  • Nuclear spacecraft propulsion technology

    have more kinetic energy per unit mass. This makes low-molecular-mass propellants more effective than high-molecular-mass propellants. Because chemical rockets

    Nuclear thermal rocket

    Nuclear thermal rocket

    Nuclear_thermal_rocket

  • Index of physics articles (C)
  • Discovery Computational aeroacoustics Computational chemical methods in solid-state physics Computational electromagnetics Computational fluid dynamics Computational

    Index of physics articles (C)

    Index_of_physics_articles_(C)

  • Spin–orbit interaction
  • Relativistic interaction in quantum physics

    avoided, because one has to account for hidden momentum. In solid state physics and particle physics, Mott scattering describes the scattering of electrons

    Spin–orbit interaction

    Spin–orbit_interaction

  • Yttrium(III) oxide
  • Chemical compound

    give the red color in color TV picture tubes. Y2O3 is a prospective solid-state laser material. In particular, lasers with ytterbium as dopant allow

    Yttrium(III) oxide

    Yttrium(III) oxide

    Yttrium(III)_oxide

  • Nuclear binding energy
  • Minimum energy required to separate particles within a nucleus

    Soheil (2017-09-01). "Mass Defect from Nuclear Physics to Mass Spectral Analysis". Journal of the American Society for Mass Spectrometry. 28 (9): 1836–1843

    Nuclear binding energy

    Nuclear binding energy

    Nuclear_binding_energy

  • Atomic diffusion
  • Net transport of atoms through a solid

    In chemical physics, atomic diffusion is a diffusion process whereby the random, thermally-activated movement of atoms in a solid results in the net transport

    Atomic diffusion

    Atomic diffusion

    Atomic_diffusion

  • Claudine Hermann
  • French physicist and academic (1945–2021)

    serve there as a professor. As a researcher, she has specialized in solid-state physics. She has also served as president of the European Platform of Women

    Claudine Hermann

    Claudine Hermann

    Claudine_Hermann

  • Latent heat
  • Thermodynamic phase transition energy

    extracted to change the state of a substance without changing its temperature or pressure. This includes the latent heat of fusion (solid to liquid), the latent

    Latent heat

    Latent heat

    Latent_heat

  • Bose–Einstein condensate
  • State of matter

    In condensed matter physics, a Bose–Einstein condensate (BEC) is a state of matter that is typically formed when a gas of bosons at very low densities

    Bose–Einstein condensate

    Bose–Einstein condensate

    Bose–Einstein_condensate

  • Elias Burstein
  • American physicist (1917–2017)

    He is known for his pioneering fundamental research in the optical physics of solids; for writing and editing hundreds of articles and other publications;

    Elias Burstein

    Elias Burstein

    Elias_Burstein

  • Superfluid helium-4
  • State of matter at low temperatures

    which leads to a very high effective thermal conductivity. Many ordinary liquids, like alcohol or petroleum, creep up solid walls, driven by their surface

    Superfluid helium-4

    Superfluid_helium-4

  • Neutron star
  • Collapsed core of a massive star

    These mass–radius constraints, combined with chiral effective field theory calculations, tighten constraints on the neutron star equation of state. Equation

    Neutron star

    Neutron star

    Neutron_star

  • Spontaneous symmetry breaking
  • Symmetry breaking through the vacuum state

    Prize in Physics 2008". nobelprize.org. Retrieved January 15, 2008. Wikiquote has quotations related to Spontaneous symmetry breaking. Effective Field Theory

    Spontaneous symmetry breaking

    Spontaneous symmetry breaking

    Spontaneous_symmetry_breaking

  • Plasma (physics)
  • State of matter

    Leal-Quirós, Edbertho (2004). "Plasma Processing of Municipal Solid Waste". Brazilian Journal of Physics. 34 (4B): 1587–1593. Bibcode:2004BrJPh..34.1587L. doi:10

    Plasma (physics)

    Plasma (physics)

    Plasma_(physics)

  • Diamagnetism
  • Magnetic property of ordinary materials

    Retrieved 26 September 2011. Kittel, Charles (1986). Introduction to Solid State Physics (6th ed.). John Wiley & Sons. pp. 299–302. ISBN 978-0-471-87474-4

    Diamagnetism

    Diamagnetism

    Diamagnetism

  • Index of physics articles (M)
  • Physics MIT Plasma Science and Fusion Center ML-1 MNDO MNS matrix MOATA MOCADI MODTRAN MOPAC MOX fuel MPC&A MPRG Erlangen Division 3 MSSM Higgs mass MSU

    Index of physics articles (M)

    Index_of_physics_articles_(M)

  • Electron
  • Elementary particle with negative charge

    particle formalism, by replacing its mass with the effective-mass tensor. In the Standard Model of particle physics, electrons belong to the group of subatomic

    Electron

    Electron

    Electron

  • Heavy fermion superconductor
  • David Mermin, Solid State Physics Pfleiderer, C. (2009). "Superconducting phases of f -electron compounds". Reviews of Modern Physics. 81 (4): 1551–1624

    Heavy fermion superconductor

    Heavy_fermion_superconductor

  • Solomon Pekar
  • Ukrainian physicist (1917–1985)

    Institute of Physics Kittel, Charles (1996) Introduction to Solid State Physics (Wiley, NY). Polarons, in: Encyclopedia of Condensed Matter Physics, ed. by

    Solomon Pekar

    Solomon_Pekar

  • Polymer capacitor
  • Solid conductive electrolyte

    polymer electrolytic capacitor, is an electrolytic capacitor (e-cap) with a solid conductive polymer electrolyte. There are four different types: Polymer

    Polymer capacitor

    Polymer capacitor

    Polymer_capacitor

  • Quantum oscillations
  • Experiments used to map the Fermi surface

    2023. Retrieved 23 March 2012. Ibach, Harald; Hans Lüth (1995). Solid-state physics: an introduction to principles of materials science. Berlin: Springer-Verlag

    Quantum oscillations

    Quantum_oscillations

  • Octachloropropane
  • Chemical compound

    Unlike the latter, it is somewhat volatile and thus effective even without physical contact with the solid. Octachloropropane was detected as a relatively

    Octachloropropane

    Octachloropropane

    Octachloropropane

  • White dwarf
  • Stellar core remnant

    dense. The physics of degeneracy yields a maximum mass for a non-rotating white dwarf, the Chandrasekhar limit— approximately 1.44 times the mass of the Sun—

    White dwarf

    White dwarf

    White_dwarf

  • Yttrium iron garnet
  • Synthetic garnet

    synthesis of yttrium iron garnet each with their pros and cons. The solid-state reaction method is a traditional approach for YIG synthesis, involving

    Yttrium iron garnet

    Yttrium iron garnet

    Yttrium_iron_garnet

  • Galaxy rotation curve
  • Observed discrepancy in galactic angular momenta

    Marius; Li, ZhaoZhou; Ishigaki, Miho N. (2020). "The mass of our Milky Way". Science China Physics, Mechanics & Astronomy. 63 (10) 109801. arXiv:1912.02599

    Galaxy rotation curve

    Galaxy rotation curve

    Galaxy_rotation_curve

  • Calcium copper titanate
  • Chemical compound

    conditions. Pure CCTO, however, can be easily synthesized by standard solid state methods via intimate mixtures of the metal carbonate and oxide precursors

    Calcium copper titanate

    Calcium copper titanate

    Calcium_copper_titanate

  • Argon compounds
  • Class of chemical compounds

    NbO2(Ng)2 (Ng=Ar, Xe) and MO4(X) (M=Nb, Ta; X=Ar, Xe, O2) in solid argon". Chemical Physics. 351 (1–3): 13–18. Bibcode:2008CP....351...13Z. doi:10.1016/j

    Argon compounds

    Argon_compounds

  • Bose–Einstein condensation of quasiparticles
  • Occurrence in collective excitations

    gives: Where, n {\displaystyle n} is the exciton density, effective mass (of electron mass order) m eff {\displaystyle m_{\text{eff}}} , and ℏ {\displaystyle

    Bose–Einstein condensation of quasiparticles

    Bose–Einstein_condensation_of_quasiparticles

  • Polaron
  • Quasiparticle in condensed matter physics

    quasiparticle used in condensed matter physics to understand the interactions between electrons and atoms in a solid material. The polaron concept was proposed

    Polaron

    Polaron

    Polaron

  • Gauge theory
  • Physical theory with fields invariant under the action of local "gauge" Lie groups

    gauge theories tractable have found many other applications, from solid-state physics and crystallography to low-dimensional topology. In electrostatics

    Gauge theory

    Gauge theory

    Gauge_theory

  • Thermal transport in nanostructures
  • The transport of heat in solids involves both electrons and vibrations of the atoms (phonons). When the solid is perfectly ordered over hundreds of thousands

    Thermal transport in nanostructures

    Thermal_transport_in_nanostructures

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