Matches in SemOpenAlex for { <https://semopenalex.org/work/W3126764316> ?p ?o ?g. }
- W3126764316 abstract "In this work we report on the Landau gauge photon propagator computed for pure gauge 4D compact QED in the confined and deconfined phases and for large lattice volumes: ${32}^{4}$, ${48}^{4}$ and ${96}^{4}$. In the confined phase, compact QED develops mass scales that render the propagator finite at all momentum scales and no volume dependence is observed for the simulations performed. Furthermore, for the confined phase the propagator is compatible with a Yukawa massive type functional form. For the deconfined phase the photon propagator seems to approach a free field propagator as the lattice volume is increased. In both cases, we also investigate the static potential and the average value of the number of Dirac strings in the gauge configurations $m$. In the confined phase the mass gap translates into a linearly growing static potential, while in the deconfined phase the static potential approaches a constant at large separations. Results shows that $m$ is, at least, one order of magnitude larger in the confined phase and confirm that the appearance of a confined phase is connected with the topology of the gauge group." @default.
- W3126764316 created "2021-02-15" @default.
- W3126764316 creator A5017946542 @default.
- W3126764316 creator A5023095919 @default.
- W3126764316 creator A5029607160 @default.
- W3126764316 date "2021-05-26" @default.
- W3126764316 modified "2023-10-18" @default.
- W3126764316 title "Lattice Landau gauge photon propagator for 4D compact QED" @default.
- W3126764316 cites W1576153461 @default.
- W3126764316 cites W1728319323 @default.
- W3126764316 cites W1964024767 @default.
- W3126764316 cites W1972001282 @default.
- W3126764316 cites W1984825036 @default.
- W3126764316 cites W1992756273 @default.
- W3126764316 cites W1994148398 @default.
- W3126764316 cites W1999733010 @default.
- W3126764316 cites W2000566356 @default.
- W3126764316 cites W2015930580 @default.
- W3126764316 cites W2017738335 @default.
- W3126764316 cites W2019419289 @default.
- W3126764316 cites W2021460811 @default.
- W3126764316 cites W2021984131 @default.
- W3126764316 cites W2029301184 @default.
- W3126764316 cites W2036965993 @default.
- W3126764316 cites W2038494817 @default.
- W3126764316 cites W2039028423 @default.
- W3126764316 cites W2040638889 @default.
- W3126764316 cites W2042394895 @default.
- W3126764316 cites W2047702795 @default.
- W3126764316 cites W2059448777 @default.
- W3126764316 cites W2063900449 @default.
- W3126764316 cites W2066160696 @default.
- W3126764316 cites W2077796411 @default.
- W3126764316 cites W2078436164 @default.
- W3126764316 cites W2078912967 @default.
- W3126764316 cites W2080768715 @default.
- W3126764316 cites W2082750002 @default.
- W3126764316 cites W2086504673 @default.
- W3126764316 cites W2090754012 @default.
- W3126764316 cites W2091350929 @default.
- W3126764316 cites W2092617456 @default.
- W3126764316 cites W2118440607 @default.
- W3126764316 cites W2124148162 @default.
- W3126764316 cites W2139939405 @default.
- W3126764316 cites W2140609344 @default.
- W3126764316 cites W2143087105 @default.
- W3126764316 cites W2172949211 @default.
- W3126764316 cites W2273229961 @default.
- W3126764316 cites W2346528511 @default.
- W3126764316 cites W2346666296 @default.
- W3126764316 cites W2794030126 @default.
- W3126764316 cites W3014443735 @default.
- W3126764316 cites W3022614749 @default.
- W3126764316 cites W3098174716 @default.
- W3126764316 cites W3099176214 @default.
- W3126764316 cites W3101204080 @default.
- W3126764316 cites W3105975387 @default.
- W3126764316 cites W3106342410 @default.
- W3126764316 cites W3106377613 @default.
- W3126764316 cites W3119297872 @default.
- W3126764316 cites W3121823746 @default.
- W3126764316 cites W3122133105 @default.
- W3126764316 cites W3169064416 @default.
- W3126764316 cites W4301069645 @default.
- W3126764316 doi "https://doi.org/10.1103/physrevd.103.094519" @default.
- W3126764316 hasPublicationYear "2021" @default.
- W3126764316 type Work @default.
- W3126764316 sameAs 3126764316 @default.
- W3126764316 citedByCount "7" @default.
- W3126764316 countsByYear W31267643162021 @default.
- W3126764316 countsByYear W31267643162022 @default.
- W3126764316 countsByYear W31267643162023 @default.
- W3126764316 crossrefType "journal-article" @default.
- W3126764316 hasAuthorship W3126764316A5017946542 @default.
- W3126764316 hasAuthorship W3126764316A5023095919 @default.
- W3126764316 hasAuthorship W3126764316A5029607160 @default.
- W3126764316 hasBestOaLocation W31267643161 @default.
- W3126764316 hasConcept C104416048 @default.
- W3126764316 hasConcept C121332964 @default.
- W3126764316 hasConcept C138817895 @default.
- W3126764316 hasConcept C159317903 @default.
- W3126764316 hasConcept C181830111 @default.
- W3126764316 hasConcept C24890656 @default.
- W3126764316 hasConcept C2781204021 @default.
- W3126764316 hasConcept C3079626 @default.
- W3126764316 hasConcept C42238305 @default.
- W3126764316 hasConcept C62520636 @default.
- W3126764316 hasConceptScore W3126764316C104416048 @default.
- W3126764316 hasConceptScore W3126764316C121332964 @default.
- W3126764316 hasConceptScore W3126764316C138817895 @default.
- W3126764316 hasConceptScore W3126764316C159317903 @default.
- W3126764316 hasConceptScore W3126764316C181830111 @default.
- W3126764316 hasConceptScore W3126764316C24890656 @default.
- W3126764316 hasConceptScore W3126764316C2781204021 @default.
- W3126764316 hasConceptScore W3126764316C3079626 @default.
- W3126764316 hasConceptScore W3126764316C42238305 @default.
- W3126764316 hasConceptScore W3126764316C62520636 @default.
- W3126764316 hasFunder F4320323392 @default.
- W3126764316 hasFunder F4320334779 @default.
- W3126764316 hasIssue "9" @default.