Mechanical Isotropic Confinement for Aneutronic p-¹¹B Fusion via Multi-Axis Rotating Hyperbare Mercury Chamber Coupled by Spectral Attenuation Index k₂

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Abstract

We propose a novel architecture for aneutronic proton-boron-11 (p-¹¹B) fusion achieving a theoretical energy gain factor Q = 43.5, based on three physically grounded innovations: Characterization of liquid mercury as a wave-propagating medium using the spectral attenuation index k₂ = πf₀/(Q×Vₛ), extended from geological seismology to nuclear fusion confinement media. Resonant microwave coupling optimized at f_MW ≈ 290 MHz matching the skin-depth/acoustic-wavelength condition in mercury, with electromagnetic mode stirring broadening the spectral window by ±17 MHz. Multi-axis rotating hyperbare chamber providing mechanical isotropic confinement equivalent to centrifugal pressures of 2,000–8,000 bar — achieving…

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Topics & keywords

Keywords
  • Inertial confinement fusion
  • Attenuation
  • Isotropy
  • Fusion
  • Nuclear fusion
  • Laser
  • Neutron
UN Sustainable Development Goals
  • Affordable and clean energy
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