Fermi gas

E57419

A Fermi gas is a quantum many-particle system composed of fermions that obey Fermi–Dirac statistics, often used to model electrons in metals, neutrons in neutron stars, and ultracold atomic gases.

AI illustration

How this image was made

AI-generated illustration of Fermi gas

This AI-generated illustration was produced by black-forest-labs/FLUX.2-dev (1024x1024) from a prompt written by openai/gpt-oss-120b from the entity's label + description.

Prompt

Generate an image of a fermi gas (A Fermi gas is a quantum many-particle system composed of fermions that obey Fermi–Dirac statistics, often used to model electrons in metals, neutrons in neutron stars, and ultracold atomic gases.)

All labels observed (2)

Label Occurrences
Fermi gas canonical 2
Fermi gas model 1

How this entity was disambiguated

Statements (49)

Predicate Object
instanceOf ideal quantum gas ⓘ
quantum many-body system ⓘ
theoretical physics model ⓘ
applicableTo electrons in a metal conduction band ⓘ
neutron matter in neutron stars (approximation) ⓘ
nucleons in atomic nuclei (approximation) ⓘ
trapped ultracold fermionic atoms ⓘ
assumes indistinguishable fermions ⓘ
occupation numbers 0 or 1 per state ⓘ
characterizedBy Fermi energy ⓘ
Fermi momentum ⓘ
Fermi temperature ⓘ
composedOf fermions ⓘ
contrastedWith Bose–Einstein gas ⓘ
linked to: Bose gas
describedIn statistical mechanics ⓘ
equationOfStateDependsOn particle density ⓘ
spin degeneracy ⓘ
temperature ⓘ
hasDistributionFunction Fermi–Dirac distribution ⓘ
hasProperty at most one fermion per single-particle quantum state ⓘ
particles obey Pauli exclusion principle ⓘ
pressure persists at zero temperature ⓘ
quantum degeneracy at low temperature ⓘ
supports Fermi pressure ⓘ
hasVariant degenerate Fermi gas ⓘ
ideal Fermi gas ⓘ
interacting Fermi gas ⓘ
non-interacting Fermi gas ⓘ
relativistic Fermi gas ⓘ
spin-polarized Fermi gas ⓘ
limitCase classical ideal gas at high temperature and low density ⓘ
namedAfter Enrico Fermi ⓘ
obeys Fermi–Dirac statistics ⓘ
relatedToConcept Bose gas ⓘ
Fermi liquid ⓘ
Fermi surface ⓘ
Pauli exclusion principle ⓘ
degeneracy pressure ⓘ
quantum degeneracy ⓘ
temperatureRegime quantum effects dominate below Fermi temperature ⓘ
usedIn astrophysics ⓘ
cold atom physics ⓘ
condensed matter physics ⓘ
nuclear physics ⓘ
usedToExplain electronic heat capacity of metals ⓘ
stability of white dwarfs and neutron stars via degeneracy pressure ⓘ
usedToModel electrons in metals ⓘ
neutrons in neutron stars ⓘ
ultracold atomic gases ⓘ

How these facts were elicited

Referenced by (3)

Full triples — surface form annotated when it differs from this entity's canonical label.

Pauli exclusion principle → isBasisFor → Fermi gas model ⓘ
linked to: Fermi gas