Landauer's principle

E87719

Landauer's principle is a foundational concept in thermodynamics and information theory stating that erasing one bit of information in a computational process necessarily dissipates a minimum amount of heat, linking information processing to physical entropy.

AI illustration

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AI-generated illustration of Landauer's principle

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 Landauer's principle (Landauer's principle is a foundational concept in thermodynamics and information theory stating that erasing one bit of information in a computational process necessarily dissipates a minimum amount of heat, linking information processing to physical entropy.)

All labels observed (2)

Label Occurrences
Landauer's principle canonical 5
Landauer’s principle 1

How this entity was disambiguated

Statements (46)

Predicate Object
instanceOf information-theoretic principle ⓘ
physical principle ⓘ
thermodynamic principle ⓘ
appliesTo bit erasure ⓘ
logically irreversible computation ⓘ
overwriting of memory ⓘ
reset-to-zero operation ⓘ
concerns energy cost of information processing ⓘ
entropy production in information erasure ⓘ
thermodynamic cost of computation ⓘ
coreClaim erasure of one bit of information has a minimum thermodynamic cost ⓘ
information is physical ⓘ
logically irreversible operations are necessarily accompanied by heat dissipation ⓘ
dependsOn Boltzmann constant ⓘ
absolute temperature ⓘ
field computational physics ⓘ
information theory ⓘ
reversible computing ⓘ
statistical mechanics ⓘ
thermodynamics ⓘ
hasConsequence links logical irreversibility to physical irreversibility ⓘ
sets lower bound on energy per logical operation involving erasure ⓘ
hasFormula Q ≥ kT ln 2 per erased bit ⓘ
implies no computation can be completely dissipationless if it includes erasure ⓘ
reversible computation can in principle avoid Landauer heat for logical operations ⓘ
minimumEntropyIncreasePerBit k ln 2 ⓘ
minimumHeatPerBit kT ln 2 ⓘ
motivated development of low-power computing limits ⓘ
research in thermodynamics of computation ⓘ
namedAfter Rolf Landauer ⓘ
publicationYear 1961 ⓘ
publishedIn IBM Journal of Research and Development ⓘ
relatedTo Bennett's logical reversibility ⓘ
Boltzmann entropy ⓘ
Shannon entropy ⓘ
reversible computing ⓘ
second law of thermodynamics ⓘ
relatesQuantity heat dissipation ⓘ
information entropy ⓘ
thermodynamic entropy ⓘ
statedBy Rolf Landauer ⓘ
status widely accepted in physics and information theory ⓘ
supports physical limits of computation ⓘ
temperatureDependence minimum heat cost is proportional to absolute temperature ⓘ
usedInArgument Maxwell's demon resolution ⓘ
Szilard engine analysis ⓘ

How these facts were elicited

Referenced by (6)

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

Rolf Landauer → knownFor → Landauer's principle ⓘ
Rolf Landauer → theoryFormulated → Landauer's principle ⓘ
Koomey's law → relatedTo → Landauer's principle ⓘ
Bennett's logical reversibility → relatedTo → Landauer's principle ⓘ
Maxwell’s demon → relatedConcept → Landauer’s principle ⓘ
subject linked to: Maxwell’s Demon
linked to: Landauer's principle