Infrared photons help E(8)XE(8) strings to both persist and exist -- at the externalized core-field-density of the multiplicit proximal localized cite of both orbifolds and orbifold eigensets.
I will continue with the suspense later! To Be Continued! Sincerely, Samuel David Roach.
Showing posts with label E(8)XE(8) strings. Show all posts
Showing posts with label E(8)XE(8) strings. Show all posts
Monday, June 5, 2017
Infrared Photons And Heterotic Strings
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core-field-density,
E(8)XE(8) strings,
infrared photons,
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orbifolds,
strings
Saturday, February 9, 2013
A Little Bit Here About E(8)XE(8) Strings
E(8)XE(8) superstrings are heterotic strings that inter bind orbifolds, as well as holding together certain endpoints of orbifold eigensets. Such heterotic strings as I have just mentioned wobble in a similar but different manner as E(6)XE(6) superstrings. The main difference in their behavior during the course of a given arbitrary iteration of BRST is that E(8)XE(8) superstrings, along the coniaxial of their general closed stringular topology -- sway in one Njenhuis spin-orbital general directoralization during the first set of two general holomorphic-based motions, while, then swaying in the opposite general Njenhuis holomorphic directoralization over the course of the next set of two general holomorphic-based motions. What I mean by a set of two general holomorphic-based motions refers to the format of tendency that I described as to the nature of the sub-metric that E(6)XE(6) superstrings undergo during the course of any given arbitrary iteration of BRST during an iteration of group instanton. Since the sway-like spin-orbital motion that I just described when referring to E(8)XE(8) superstrings is in a relatively Njenhuis-based format of holomorphicity, and, since such a swaying here is only along the mapping of the two-dimensional-based coniaxial that works to describe the format of a closed superstring, then, the mentioned back-and-forth sway motion works to define the addition of four added pseudo-dimensions (as simple as 2+2=4). So, since the initial pseudo-dimensionality involves the equivalent of 12 spatial dimensions plus time, the addition of 4 spatial dimensions makes such a heterotic superstring that I am here describing bear a pseudo-dimensionality of 16 spatial dimensions plus time. I will continue with the suspense later!
Wednesday, January 11, 2012
A Little As To The M-Theory Idea
Superstrings tend to exist in orbifolds. Orbifolds tend to exist in orbifold eigensets.
E(8)XE(8) superstrings are the fabric that binds orbifolds into orbifold eigensets.
The reason that superstrings appear to exist as membranes that act in unison is because of a number of reasons.
1) As said before, superstrings tend to exis in orbifolds, and orbifolds are the membrane-source of all substringular phenomena that act as a group besides superstrings And phenomena that are smaller than superstrings.
2) Orbifolds tend to exist in orbifold eigensets, and, such eigensets exist in as a membrane-like phenomena as well.
3) Superstrings that exist in any tense of superconformal invariance exist -- while these are in superconformal invariance -- in a general vibrational locus, when taken individually, so as to form via their corresponding Gliossi-Sherk-Olive ghosts, a pattern that represenst a membrane-based appearance. If it wasn't for the existence of ghost anomalies, their would be no substance where as to form the dilatons and dilatinos that are necessary for the ensuing formation of gravitons and gravitinos. Gravitons and gravitinos are the gravitational-type of superstrings that -- via the Ricci Action via the Rarita Structure -- allow for the existence of gravity.
4) Orbifolds and orbifold eigensets that exist in any form of conformal invariance form a multiplicit array of Gliossi-Sherk-Olive membrane-based ghost patterns that bear activities that excentuate the existence of that phenomena that interconnect the orbifolds, and E(8)XE(8) superstrings are that phenomena that interconnect the orbifolds into orbifold eigensets so that phenomena that are significantly larger than superstrings may act together as a group in the form of normally detectable subatomic phenomena.
5) The activity of E(8)XE(8) superstrings indirectly cause the motion of E(6)XE(6) strings in such a fashion so that these later mentioned hadrons may pluck the second-ordered light-cone-gauge eigenstates like a harp so that vibration eigenstates known of as Schwinger Indices may propagate along the Rarita Structure so that there may be a relationship between gravitational particles and discrete units of energy. Without the prior implied Ricci Action taken multiplicitly throught space and time, gravity would not have a chance to be kinematic upon superstrings that are discrete units of energy.
6) The exchange between Gliossi-Sherk-Olive ghost eigenstates and other ghost eigenstates that are on the Real Reimmanian Plane eigenconiaxials where superstrings and their corresponding Fadeev-Popov ghosts With the Neilson-Kollosh ghosts that exist in the regions where the gravitational particles work via the Ricci Action eigenstates so as to allow for what would appear as a membranal interchange -- while certain ghost anomalies are perturbated into positive and negative norm-states -- that makes it appear that the basic "substance" that forms subatomic phenomena is to be membranal phenomena. Yet, if it wasn't for the existence of superstrings, orbifolds would have no internal-based function, and, orbifold eigenstates would have no internal-based function.
E(8)XE(8) superstrings are the fabric that binds orbifolds into orbifold eigensets.
The reason that superstrings appear to exist as membranes that act in unison is because of a number of reasons.
1) As said before, superstrings tend to exis in orbifolds, and orbifolds are the membrane-source of all substringular phenomena that act as a group besides superstrings And phenomena that are smaller than superstrings.
2) Orbifolds tend to exist in orbifold eigensets, and, such eigensets exist in as a membrane-like phenomena as well.
3) Superstrings that exist in any tense of superconformal invariance exist -- while these are in superconformal invariance -- in a general vibrational locus, when taken individually, so as to form via their corresponding Gliossi-Sherk-Olive ghosts, a pattern that represenst a membrane-based appearance. If it wasn't for the existence of ghost anomalies, their would be no substance where as to form the dilatons and dilatinos that are necessary for the ensuing formation of gravitons and gravitinos. Gravitons and gravitinos are the gravitational-type of superstrings that -- via the Ricci Action via the Rarita Structure -- allow for the existence of gravity.
4) Orbifolds and orbifold eigensets that exist in any form of conformal invariance form a multiplicit array of Gliossi-Sherk-Olive membrane-based ghost patterns that bear activities that excentuate the existence of that phenomena that interconnect the orbifolds, and E(8)XE(8) superstrings are that phenomena that interconnect the orbifolds into orbifold eigensets so that phenomena that are significantly larger than superstrings may act together as a group in the form of normally detectable subatomic phenomena.
5) The activity of E(8)XE(8) superstrings indirectly cause the motion of E(6)XE(6) strings in such a fashion so that these later mentioned hadrons may pluck the second-ordered light-cone-gauge eigenstates like a harp so that vibration eigenstates known of as Schwinger Indices may propagate along the Rarita Structure so that there may be a relationship between gravitational particles and discrete units of energy. Without the prior implied Ricci Action taken multiplicitly throught space and time, gravity would not have a chance to be kinematic upon superstrings that are discrete units of energy.
6) The exchange between Gliossi-Sherk-Olive ghost eigenstates and other ghost eigenstates that are on the Real Reimmanian Plane eigenconiaxials where superstrings and their corresponding Fadeev-Popov ghosts With the Neilson-Kollosh ghosts that exist in the regions where the gravitational particles work via the Ricci Action eigenstates so as to allow for what would appear as a membranal interchange -- while certain ghost anomalies are perturbated into positive and negative norm-states -- that makes it appear that the basic "substance" that forms subatomic phenomena is to be membranal phenomena. Yet, if it wasn't for the existence of superstrings, orbifolds would have no internal-based function, and, orbifold eigenstates would have no internal-based function.
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dilatons,
E(8)XE(8) strings,
eigensets,
Gliossi-Sherk-Olive ghosts,
light-cone-gauge,
Neilson-Kollosh,
orbifolds,
Rarita Structure,
Ricci Action,
Schwinger Indices,
superconformal invariance
Monday, April 11, 2011
More As To the Dangers of the Hadron Colliding Experiment
I have some knowledge that I would like to share as to why the Hadron Colliding Experiment should be shut down.
I have a blog entitled samsphysicsworld@blogspot.com. Within this blog, I have a post named the Leverage of the Higgs Action.
I also have commented on Linkedin about the dangers of the Hadron Collliding Experiment.
You can reach my blogcite via google. Please feel free to read any of my blog and comment about it if you wish!
My reasons for the acknowledgement of the dangers that I have mentioned above are fourfold:
1) The leverage of the Fischler-Suskind-Mechanism upon the Higgs Action as a scalar is the reciprical of the fraction of a Coulumb that forms discrete charge. (1/6.25*10^18)=1.6*10^(-19).
2) E(6)XE(6) strings that are adjacent spin assymetrically as a safeguard to homotopy -- and thus should not be collided together.
3) E(8)XE(8) strings that are adjacent spin assymetrically as a safeguard to homotopy -- and thus should not be collided together.
& 4) Gluons should not be collided together, because the gauge-metrical activity of gluons is the source of the Wick Action -- and undoing the Wick Action could "domino" fissures in space-time-fabric that could be detrimental to homotopy and thus detrimental to life.
Once you have rigorously considered the knowledge that I have presented to various people, please do all that you can with your standing in the global community to help end the Hadron Colliding Experiment.
Sincerely,
Sam.
I have a blog entitled samsphysicsworld@blogspot.com. Within this blog, I have a post named the Leverage of the Higgs Action.
I also have commented on Linkedin about the dangers of the Hadron Collliding Experiment.
You can reach my blogcite via google. Please feel free to read any of my blog and comment about it if you wish!
My reasons for the acknowledgement of the dangers that I have mentioned above are fourfold:
1) The leverage of the Fischler-Suskind-Mechanism upon the Higgs Action as a scalar is the reciprical of the fraction of a Coulumb that forms discrete charge. (1/6.25*10^18)=1.6*10^(-19).
2) E(6)XE(6) strings that are adjacent spin assymetrically as a safeguard to homotopy -- and thus should not be collided together.
3) E(8)XE(8) strings that are adjacent spin assymetrically as a safeguard to homotopy -- and thus should not be collided together.
& 4) Gluons should not be collided together, because the gauge-metrical activity of gluons is the source of the Wick Action -- and undoing the Wick Action could "domino" fissures in space-time-fabric that could be detrimental to homotopy and thus detrimental to life.
Once you have rigorously considered the knowledge that I have presented to various people, please do all that you can with your standing in the global community to help end the Hadron Colliding Experiment.
Sincerely,
Sam.
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E(6)XE(6) strings,
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gluons,
Hadron Colliding Experiment,
Higgs Action,
Wick Action
Monday, August 9, 2010
More On The Importance Of Not Colliding Hadrons
E(8)XE(8) strings that are adjacent have a spin-orbital-momentum that is covariantly assymetric. This assymetric spin-orbit allows for this type of superstring to not collide with other of such superstrings. Hadrons of any sort are the bases of the holding together of orbifolds and orbifold eigenstates. Counterpart pairing hadrons have a Laplacian delineation that bears a symmetrism that is trivially isomorphic in terms of orbifolds and orbifold eigensets that comprise electromagnetic energy and in terms of kinetic energy, and is non-trivially isomorphic in terms of orbifolds and orbifold eigensets that comprise mass. So, the colliding of hadrons would cause an attempt to produce a contradiction to a fractor of the Pauli Exclusion Principle that could undue the ability of the Wick Action in such a way as to undue the operation of the Landau-Gisner Action. Such an undoing of the operation of the Landau-Gisner Action could cause a lack in the ability of the gauge-metrical activity of the Higgs Acton, thereby inhibiting the activity of the Kaeler Metric in a set regional locus. Detracting from the necessary Kaeler Metric eigenstates has the potential to undo the ability of the local superstrings that are in the region of the Hadron Colliding Experiment to regain the necessary permittivity to remain as the energy that these need to be so that such strings may even exist. Yet, the tendency of superstrings, since these operate over the delineation of homotopy, is to exist as discrete units of energy permittivity. Such a juxtaposition has the potential of fraying local sections of space-time that could form a black-hole or black-holes that have the potential of damaging earth. Local space-time fabric is to remain unfrayed, since black-holes have the ability of spreading rather quickly. So, please end the Hadron Colliding Experiment so that our planet may last. I am writing this out of a love for mankind. God Bless You, and you have a phenomenal day!
Sincerely,
Sam.
Sincerely,
Sam.
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E(8)XE(8) strings,
Hadron Colliding Experiment,
Kaeler metric,
Landau-Gisner Action,
Laplacian
Wednesday, July 28, 2010
The Dangers Of Colliding Hadrons, Part One
E(8)XE(8) strings are heterotic strings known as hadrons. These superstrings (this type of a superstring) Quantizes with other such E(8)XE(8) superstrings to form sub-atomic particles such as gluons. The gluonic force is considered the strong force, since it binds quarks and/or leptons (given the situation) together in order to allow the existence of particles such as protons, neutrons, electrons, etc... . The Higgs Action is the "force," since it allows the attainment and re attainment of permittivity in superstrings so that discrete energy may exist so that energy and thence existence may exist at all. Since E(8)XE(8) strings bind superstrings that comprise kinetic energy, electromagnetic energy, and mass into orbifolds of the said phenomena AND since E(8)XE(8) strings bind orbifolds that comprise kinetic energy, electromagnetic energy, and mass into orbifold eigensets, such heterotic strings known as hadrons are essential to the topological operation that allows for homotopy so that Cassimer Invariance may occur so that substringular phenomena may not completely fray.
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amplitudanal force,
Cassimer Invariance,
E(8)XE(8) strings,
orbifolds,
permittivity,
quantizes,
topological operation
Wednesday, July 21, 2010
The Importance of E(8)XE(8) Strings
One may wish to understand the importance of E(8)XE(8) superstrings. These type of heterotic superstrings exist at the outer periphery of every orbifold and at the outer periphery of every orbifold eigenset. Such heterotic strings that are adjacent spin asymmetrically so that these may have their own Laplacian and Fourier subspace that is not intruded upon. Orbifolds that comprise of mass and orbifold eigensets that comprise of mass have pairing counterpart E(8)XE(8) strings that have a non-trivial isomorphism related to their Laplacian placement per iteration of the substringular, and orbifolds that comprise of light and orbifold eigensets that comprise of light have pairing counterpart E(8)XE(8) strings that have a trivial isomorphism related to their Laplacian placement per iteration of the substringular. This is because orbifolds and orbifold eigensets that appertain to mass bear a Kaluza-Klein light-cone-gauge-topology, and has spacial singularities in-between their respective superstrings and in-between their respective orbifolds that are Yau-Exact, while, the orbifolds and orbifold eigensets that appertain to light generally bear a Yang-Mills light-cone-gauge-topology (always except within very few instantons that the light has scattered), and has spacial singularities in-between their respective superstrings and in-between their respective orbifolds that is not Yau-Exact. So, the E(8)XE(8) strings work to bind the superstrings into orbifolds and E(8)XE(8) strings work to bind the respective orbifolds into orbifold eigensets (like a fractor of the activity of gluons binding leptons and quarks into sub-atomic particles, except that the given heterotic strings described are more kinematic, since these described heterotic superstrings differentiate in a sub-level to phenomena such as gluons.
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E(8)XE(8) strings,
Kaluza-Klein,
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Yang-Mills,
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