Distortion and Heating an Accretion Disc of a Black Hole

Accretion Disc; Superparticles; Singularity; Celestial Objects; Spinning Speed; Rotational Kinetic Energy.

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January 20, 2026
January 28, 2026

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In the present work, several mysteries of a black hole, including its spinning speed, frequency, angular momentum, and rotational kinetic energy, could be addressed. Indeed, the radius, density, surface temperature, thermal energy, and rotational speed of a black hole singularity and the accretion disc may be increased and decreased rapidly according to the conservation law of angular momentum and energy. The transitional and rotational kinetic energy of particles in an accretion disc of a black hole is thermalized. The Nuclear fusion ball has been squeezed steeply due to the higher pressure of a black hole to produce a new superparticle. The Gas and dust particles are capable of spinning up quickly to orbit the black hole at a huge speed and momentum. An accretion disc of a black hole could be distorted and heated up by the black hole singularity, superparticles, and celestial objects. The Powerful gravitational waves of a black hole singularity propagated through an event horizon and an accretion disc of a black hole to make ripples. The turbulent superparticles can travel through the event horizon and accretion disc of a black hole to ripple, and tear apart the gas and dust particles or make powerful black hole jets due to their motion throughout a black hole’s accretion disc. Celestial objects are mostly responsible for the tidal disruptions of a black hole. The radius of a black hole singularity had been compressed and reduced to the size of an atom due to its mass and gravitational pressure. Otherwise, the thermal energy and superparticle degeneracy pressure would suspend the distortion and reduction of a singularity ball. The hydrostatic balance of a black hole singularity protected it from any further collapsing and evaporation.