pith:SAWA3V4Y
Spatial confinement-deconfinement transition in accelerated gluodynamics within lattice simulation
In Rindler spacetime the confinement-deconfinement transition in gluodynamics becomes a spatial crossover rather than a uniform phase change.
arxiv:2602.20970 v2 · 2026-02-24 · hep-lat · gr-qc · hep-ph · hep-th · nucl-th
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Claims
Finite temperature confinement-deconfinement phase transition turns into spatial crossover in the Rindler spacetime. The position of the boundary between the phases can be described by the Tolman-Ehrenfest law with rather good accuracy although a minor deviation takes place. The critical temperature of the system in the weak acceleration regime is found to remain unchanged as that of the standard homogeneous gluodynamics.
The lattice discretization and order-parameter measurements (such as the Polyakov loop) remain reliable when formulated in Rindler coordinates, and that finite-volume and discretization artifacts do not qualitatively alter the observed spatial crossover or the agreement with the Tolman-Ehrenfest law.
Lattice simulations in Rindler spacetime show that acceleration turns the confinement-deconfinement transition in gluodynamics into a spatial crossover that approximately follows the Tolman-Ehrenfest law, while the critical temperature stays unchanged.
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| First computed | 2026-05-17T23:38:59.900918Z |
|---|---|
| Builder | pith-number-builder-2026-05-17-v1 |
| Signature | Pith Ed25519
(pith-v1-2026-05) · public key |
| Schema | pith-number/v1.0 |
Canonical hash
902c0dd798c41e7b52c43f651c6be737f083516c079d81bbaea2bd423bec2d48
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curl -sH 'Accept: application/ld+json' https://pith.science/pith/SAWA3V4YYQPHWUWEH5SRY27HG7 \
| jq -c '.canonical_record' \
| python3 -c "import sys,json,hashlib; b=json.dumps(json.loads(sys.stdin.read()), sort_keys=True, separators=(',',':'), ensure_ascii=False).encode(); print(hashlib.sha256(b).hexdigest())"
# expect: 902c0dd798c41e7b52c43f651c6be737f083516c079d81bbaea2bd423bec2d48
Canonical record JSON
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