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April 7, 20260 citationsOpen Access

Gravitational Waves, Terahertz Magnetic Field, and Laser Pumping of Graphene: Theoretical Model and Prospects

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KKuznetsov

Key Points

  • To develop a theoretical model connecting gravitational wave generation to laser-pumped graphene via a terahertz magnetic field.
  • Proposed a mathematical model relating gravitational waves to laser parameters and system characteristics.
  • Considered variable THz fields induced by laser radiation on graphene structures.
  • Derived dependencies of gravitational wave amplitude based on factors such as laser power and frequency.
  • Determined the gravitational wave effect is extremely small under current laboratory conditions.
  • Showed potential for new research directions intersecting optoelectronics, quantum physics, and gravity theory.

Abstract

AbstractThis paper proposes and develops a theoretical model that links the generation ofgravitational waves (GW) to the effect of laser radiation on graphene structures via aterahertz (THz) magnetic field. Within the hypothesis of the terahertz nature of gravity, thevariable THz field induced by a laser in graphene is considered as a source of modulatedflux of hypothetical gravitational quanta — terahertzons. Mathematical dependencies ofthe gravitational wave amplitude on laser power, system mass, and frequency are derived.It is shown that the effect is extremely small for modern laboratory conditions; however,the model opens new directions for fundamental research at the intersection ofoptoelectronics, quantum physics, and gravity theory.

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Cite This Study

Kuznetsov (2026) studied this question.

synapsesocial.com/papers/69d49fa9b33cc4c35a228122https://doi.org/10.5281/zenodo.19431946
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