V. M. Shmidt

ORCID: 0009-0009-6814-0986
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About
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Research Areas
  • Geomagnetism and Paleomagnetism Studies
  • Characterization and Applications of Magnetic Nanoparticles
  • Fluid Dynamics and Thin Films
  • Fluid Dynamics and Turbulent Flows
  • Cosmology and Gravitation Theories
  • Fluid dynamics and aerodynamics studies
  • Black Holes and Theoretical Physics
  • Nanofluid Flow and Heat Transfer
  • Fluid Dynamics and Vibration Analysis
  • Stochastic processes and statistical mechanics
  • Polymer Science and Applications
  • Economic Theory and Policy
  • Fluid Dynamics and Heat Transfer
  • Stochastic processes and financial applications
  • Engineering Diagnostics and Reliability
  • Nonlinear Dynamics and Pattern Formation
  • Hydraulic and Pneumatic Systems
  • Economic theories and models
  • Geophysics and Gravity Measurements
  • Wind and Air Flow Studies
  • Material Properties and Applications
  • Cavitation Phenomena in Pumps
  • Noncommutative and Quantum Gravity Theories
  • Advanced Thermodynamics and Statistical Mechanics
  • advanced mathematical theories

Moscow Institute of Physics and Technology
2022-2024

Institute of Solid State Physics
1988

Russian Academy of Sciences
1988

We study inflation in scalar–tensor perturbative quantum gravity driven by a one-loop effective potential. consider potentials generated three models. The first model describes single scalar field with nonvanishing mass. second massless nonminimal coupling to the Einstein tensor. third generalizes Coleman–Weinberg for gravitational case. can be consistent observational data [Formula: see text] e-foldings. did not find parameters that make generalized data. discuss implications of these...

10.1142/s0218271824500287 article EN International Journal of Modern Physics D 2024-05-09

10.1134/s1547477124700444 article EN Physics of Particles and Nuclei Letters 2024-06-01

10.1134/s199508022210033x article EN Lobachevskii Journal of Mathematics 2022-07-01

We study inflation in scalar-tensor perturbative quantum gravity driven by a one-loop effective potential. consider potentials generated three models. The first model describes single scalar field with non-vanishing mass. second massless non-minimal coupling to the Einstein tensor. third generalises Coleman-Weinberg for gravitational case. can be consistent observational data $N\sim 70$ e-foldings. $N \sim 40$ did not find parameters that make generalised data. discuss implications of these...

10.48550/arxiv.2307.02214 preprint EN cc-by arXiv (Cornell University) 2023-01-01
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