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Canonical reference. 100% of citing Pith papers cite this work as background.

5 Pith papers citing it
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background 5

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fields

hep-ph 5

years

2026 5

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UNVERDICTED 5

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representative citing papers

Dynamical evolution of the pressure on the bubble wall

hep-ph · 2026-06-29 · unverdicted · novelty 6.0

Dynamical LTE simulations reveal that heating wave formation often outlasts wall acceleration, yielding a revised maximal driving pressure criterion that weakens hydrodynamic obstruction compared to steady-state models.

Hydrodynamics of Filtered Dark Matter: A Two-Component Approach

hep-ph · 2026-04-19 · unverdicted · novelty 6.0

Filtered Dark Matter hydrodynamics during first-order phase transitions is modeled as a two-component fluid, yielding detonation-like and deflagration-like solutions in ballistic and local thermal equilibrium regimes that change relic abundance predictions.

Bounds from D/H on baryogenesis models

hep-ph · 2026-04-13 · unverdicted · novelty 2.0

Deuterium-to-hydrogen measurements leave most electroweak baryogenesis parameter space unconstrained while imposing stronger exclusions on alternative baryogenesis models.

citing papers explorer

Showing 5 of 5 citing papers.

  • Dynamical evolution of the pressure on the bubble wall hep-ph · 2026-06-29 · unverdicted · none · ref 46

    Dynamical LTE simulations reveal that heating wave formation often outlasts wall acceleration, yielding a revised maximal driving pressure criterion that weakens hydrodynamic obstruction compared to steady-state models.

  • Spontaneous Baryogenesis from Axions on Induced Electroweak Walls hep-ph · 2026-04-22 · unverdicted · none · ref 8

    An axion-like particle's domain wall or shock wave induces an electroweak phase boundary whose motion creates a local B+L chemical potential that biases active sphalerons to generate net baryon asymmetry.

  • Hydrodynamics of Filtered Dark Matter: A Two-Component Approach hep-ph · 2026-04-19 · unverdicted · none · ref 21

    Filtered Dark Matter hydrodynamics during first-order phase transitions is modeled as a two-component fluid, yielding detonation-like and deflagration-like solutions in ballistic and local thermal equilibrium regimes that change relic abundance predictions.

  • Phenomenology of Vector Dark Matter produced by a First Order Phase Transition hep-ph · 2026-04-27 · unverdicted · none · ref 25

    Dark sector first-order phase transitions near 10 MeV can substantially modify vector dark matter relic densities away from standard thermal freeze-out predictions, with distinct mass windows and calculable gravitational wave backgrounds.

  • Bounds from D/H on baryogenesis models hep-ph · 2026-04-13 · unverdicted · none · ref 17

    Deuterium-to-hydrogen measurements leave most electroweak baryogenesis parameter space unconstrained while imposing stronger exclusions on alternative baryogenesis models.