THE MALTA COSMOLOGY TEMPLATE



Chapter 05 - Darkmatter






PARTS


Part 0500
Darkmatter
Home


Part 0501
Centrifugal

Blackholes

Part 0502
Axial

Blackholes

Part 0503
Darkmatter

Darkmatter
Selfproofs


















Darkmatter Selfproofs

SELFPROOF 0506 - PETTYBLACKHOLES

Darkmatter gravitonstreams mostly consist of vast numbers of gravitons. However there will be other constituents along for the ride. Some lightweight particles will have attuned themselves to the dynamic mass of a gravitonstream and will drift along with it like a twig floating on a river. The most common of these drifters are likely to be the pettyblackholes.

Pettyblackholes (see also Selfproof 0312) are low mass blackholes created during the stabilisation of accretion particles such as electrons, nucleons, and atoms. They form, along with stabilisation photons and stabilisation electrons, in the high pressure "throats" of accretion particles and are ejected from those particles at high speed. They can be thought of as "failed" photons and electrons.
  • Photons are single blackholes with mass and energy measures that allow them to stabilise at lightspeed and within the photonic masses. The structure of photons means they subsequently always move at lightspeed irrespective of any changes in their mass (see Chapter 6). 
  • Electrons are pairs of blackholes that are forced sufficiently close together in the throat of the stabilising particle that their innate rejectivity is overcome and they can thus be held together by their mutual gravitypull. Electrons stabilise at less than lightspeed with a structure that allows subsequent speed changes without any accompanying change in mass (see Chapter 7). 
All stabilisation particles begin their formation at speeds substantially exceeding lightspeed and in an understable condition. In the case of photons and electrons this understability enables them to decelerate by differentially ejecting mass and energy until they reach stability, and with their stability maintained thereafter by their internal processes. Pettyblackholes are different in that they have no internal mechanism that maintains their mass and/or energy measures at a specific level so they differentially eject mass and energy until they become stable or until they dissipate to nothing.

Pettyblackholes are not ejected into empty space. The Universe is filled with "wall to wall" gravitysheaths and the larger of these gravitysheaths contain gravitonospheres which may or may not extend out to their respective gravitysheath interfaces. Within their gravitysheaths, these gravitonospheres are formed into gravitonstreams each of which will have, at any particular place, a measure of dynamic mass. It is into this morass of gravitonospheres that pettyblackholes are ejected.

Pettyblackholes are passive in that they attune themselves to the dynamic mass of the gravitonstream they are moving within. For many this results in dissipation but some survive for a while at least. That said, pettyblackholes are produced in such prodigious numbers that there are always more coming to replace those that dissipate.

Where the dynamic mass of a gravitonstream is low, pettyblackholes can survive for long periods. Such gravitonstreams are common in the outer regions of the gravitonospheres of galaxies. Thus it is that pettyblackholes are a substantial element of the mass of the darkmatter that is slowing galactic contraction. 



GLOSSARY
  • ACCRETION PARTICLE:     Composite objects formed by the gravitational bonding of two or more subsidiary objects. In order of minimum mass, the key accretion particles are gravitonpairs, blackholes, electrons, nucleons, atoms, stars, galaxies, galactic clusters, and galactic superclusters. Electrons also serve as stabilisation particles.
  • DYNAMIC MASS:     A combination measure of the realspeed and the mass of a graviton or of an object made of gravitons. Dynamic mass is not a constant measure. It changes as circumstances change. In objects made of gravitons, the dynamic mass measure can be of the whole object or a part of it. The dynamic mass of a star or an aircraft alters as it uses fuel. They dynamic mass of a river alters with water extraction, rainfall, and evaporation - at the same time the dynamic mass of a river varies at different points along its length as it passes across lakes, through rapids, and over waterfalls. 
  • PETTYBLACKHOLE:     Small blackholes created during the stabilisation of electrons, nucleons, and atoms. Pettyblackholes can be a substantial element in the mass of darkmatter.
  • STABILISATION ELECTRON:     An electron that forms during the stabilisation of other objects. (see also: Cosmic Electron)
  • STABILISATION PHOTON:     A photon that forms during the stabilisation of other objects. (see also:  Cosmic Photon)
  • STABILISATION PARTICLE:     A composite object formed during the stabilisation of a superior object. Some stabilisation particles, such as photons and electrons, are themselves stable and will endure until they are destroyed by external factors. Others, like the Z, W, and Higgs bosons, are unstable and decay into other objects. Cosmic electrons (qv) are accretion particles (qv).  






Comments and suggestions:  peter.ed.winchester@gmail.com

Copyright 2013 Peter (Ed) Winchester



REVISIONS

07 Nov 2016 - page created.
22 Apr 2017 - change teels to gravitons.