When a given arbitrary photon that is of one orbifold eigenset of electromagnetic energy, strikes another superstring of discrete energy permittivity in a Glioisi-based manner -- over a sequential series of group-related instantons, -- the so-stated given arbitrary individual photons, of which will always (as photons) be of a bosonic nature (closed-loop and two-dimensional), will tend to "bounce" from one general directoral tense of a relative holomorphic motion, to a reversal of its said directoral tense of relative holomorphic motion, -- until the so-mentioned respective given photons of which had just scattered upon a topological-based holonomic substrate, are re-quantized back into its ensuing correlative orbifold eigenset of electromagnetic energy, that the said photon is to then be incorporated into next. When a superstring of discrete energy permittivity perturbates -- in so as to go from one general holomorphic-based directoral flow into a relatively reversed general holomorphic-based directoral flow -- this general genus of activity works to form what is known of as an antiholomorphic Kahler condition. The region in which such a Kahler condition is to happen, may be viewed of or called a Kahler Manifold. When an antiholomorphic Kahler condition happens, the so-eluded-to Fourier-based activity of such a condition -- works to initiate what may be viewed of as an eigenstate of the Wick Action. Any respective given arbitrary Wick Action eigenstate that happens, acts as a gauge-action -- that works to act upon what may be termed of as a metric-gauge that may be viewed of as a Landau-Gisner-Action. The Landau-Gisner-Action acts upon a Laplacian-based leveraging of norm-state-projection -- of which may be termed of as the Fischler-Suskind-Mechanism. The Fischler-Suskind-Mechanism works to mobilize a respective given arbitrary Klein Bottle eigenstate -- via the wave-tug/wave-pull of what would here be a respective given arbitrary Higgs Boson eigenstate -- in so as to allow for the activity of what may be termed of as the Kahler-Metric. This just-mentioned general genus of activity, works to allow for the kinematic activity of what may be termed of as Gaussian Transformations -- in so as to allow for the continued persistence and the continued existence of both substringular spaces and discrete substringular energy.
So, when any respective given arbitrary photon scatters upon any superstring, in a Gliosis-based manner -- the said photon will then tend to work to be involved in an antiholomorphic Kahler condition. This will work -- as I have described of on this page -- in so as to cause the ensuing activity of a Kahler-Metric eigenbase. This will then work to utilize the mobilization of the respective given Higgs-Boson eigenstate -- that would be correlative to any one given arbitrary case. This is why any given arbitrary individual photons, that had just been scattered -- within the first 384 instantons after such so-stated discrete individual photons have just struck another superstring of discrete energy permittivity in a Gliosis-based manner -- will, over the relatively quite transient duration in which such an exception for photons is the case, only then tend to be directly under the influence of the Higgs Field.
I will continue with the suspense later! To Be Continued! Sincerely, Sam Roach.
Showing posts with label Higgs Field. Show all posts
Showing posts with label Higgs Field. Show all posts
Tuesday, October 27, 2015
Some Ideas As To The Effect Of The Higgs Field
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Gaussian Transformations,
Higgs Field,
Kahler-Metric,
Landau-Gisner Action,
orbifold,
Wick Action
Monday, October 26, 2015
A Little As To Why The Higgs Field Acts As Such
When any given arbitrary orbifold eigenset of electromagnetic energy, or, any given arbitrary set of orbifold eigensets of electromagnetic energy -- moves through any medium, besides through a vacuum, the so-mentioned respective eigenset or eigensets of electromagnetic energy -- will move slower, through the so-eluded-to medium -- than it would, through the generally stated medium of a vacuum. Yet, as the individual photons that work to comprise the earlier mentioned respective eigenset or eigensets, work to strike other superstrings of discrete energy permittivity -- in a Gliosis-based manner, in the process of the scattering of electromagnetic energy -- during the initially ensuing 384 directly corresponding group-related instantons after the so-eluded-to tense of a substringular collision -- the so-stated actual photons themselves will initially spring into going faster than the speed of light, while then these so-mentioned respective photons will slow down, in so as to catch-up to their directly corresponding ensuing orbifold eigenset -- of which these are to re-quantize with, as is according to Snell's Law. Think of it this way: Metaphorically, view a volume-based phenomenology -- going from being in what may be termed of as a vacuum -- to where it enters what would appear to be a relatively more viscus holonomic substrate, over time. Just as the so-stated volume-based phenomenology -- that I have here spoken of, will, as a whole, be at least mildly inhibited by the added viscum region of which it would have here entered -- what may be here termed of as the frontal region of the so-stated phenomenology, that had entered the respective new region -- will then bear what would appear to be a "Tesla-based sparking" of the components -- that would here work to comprise the metaphorical quantum of the so-eluded-to relatively frontal region of the said volume-based phenomenology, that is of this so-stated analogy. Even though the said allagorical overall volume-based entity of this case, would tend to slow down as it enters what would appear to be a more viscus or inhibited Hamiltonian operand -- the discrete units that would here work to comprise the leading edge of the quantum-based volume-based phenomenology -- would be "flickering" faster than the overall motion of the here relatively spoken cross-product-based projection, that is of the so-eluded-to entity that had then entered the said additively-speaking more viscus region. This basically undetectable and brief accelleration of composite photons -- that then immediately slow down, in so as to catch-up to their respective ensuing orbifold eigensets -- is a process that is due to what would amount to here -- as a very transient perturbation in the respective genus of the light-cone-gauge of the so-stated photons of the electromagnetic energy, that will have here entered a medium other than a vacuum. Photons tend to bear a non-abelian or a Yang-Mills light-cone-gauge topology. Whenever a photon strikes another superstring of discrete energy permittivity in a Gliosis-based manner, it will then very temporarily "spring-out" into an abelian or a Kaluza-Klein light-cone-gauge topology -- while it will then, over the same metrical progression, work to tend to only bear completely Chern-Simmons singularities. -- These then so-eluded-to entropic-based photons, will, over this very brief general genus of group metric, tend to not bear any directly corresponding Yau-Exact singularities amongst each other. This is why the here mentioned condition of entropic-based photons, which is here, relatively speaking, of a very brief part of the motion of any electromagnetic energy, as it goes through any medium other than a vacuum, is the tendency as to the only general exception as to when the Higgs Field will generally, over this said general genus of occurrence, bear a direct sway of a Yukawa Coupling upon the so-mentioned photons. Once photons directly re-quantize with any given arbitrary beam of electromagnetic energy, these tend to always re-attain working to bear a Yang-Mills light-cone-gauge topology. I will continue with the suspense later! To Be Continued!
Sam Roach.
Sam Roach.
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Chern-Simmons,
eigenset,
Hamiltonian,
Higgs Field,
orbifold,
photons,
Yang-Mills,
Yau-Exact
Sunday, October 25, 2015
A Little As To The Relationship Of The Higgs Field To Photons
Most superstrings of discrete energy permittivity and their directly corresponding counterparts -- in conjunction with their correlative Fadeev-Popov-Trace eigenstates of discrete energy impedance and their correlative light-cone-gauge eigenstates -- in order to remain as discrete energy, must routinely undergo the Kaeler-Metric, via the correlative activity of the guidance of the directly corresponding Higgs Boson eigenstates --these of which move the directly corresponding Klein Bottle eigenstates, in so as to allow for the here needed correlative Gaussian Transformations, that work to allow substringular spaces to both persist and exist, over time. This works to mean, that most superstrings of discrete energy are routinely put through the immediate influence of what is termed of as the Higgs Field. The exception is photons. Photons both have no mass, as well as the condition that photons are comprised of what would otherwise be completely Lorentz-Four-Contracted superstrings of discrete energy permittivity. This Ward-Caucy-based condition works to allow for photons -- that are Not being lagged-down by Calabi-based interactions, to just slide-out of the so-stated immediate influence of the genus of that Yukawa Coupling, that is known of as the said Higgs Field. Yet, during the first 384 directly corresponding group-related instantons that happen -- right after any given arbitrary respective photon has struck another superstring of discrete energy permittivity in a Gliosis-based manner -- since this works to form discrete increments of entropy -- this will be the only exception as to a photon, instead, being directly influenced by the Yukawa-based pull of the Higgs Field. This exception that I have just stated here, is when even a photon, that is normally not directly tugged by the Higgs Field, will be put into a situation -- in which it needs to re-attain its discrete fractals of energy -- in order to both persist and thereby exist as energy. I will continue with the suspense later! To Be Continued! Sam Roach.
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Calabi,
Gaussian Transformation,
Gliosis,
Higgs Boson,
Higgs Field,
Lorentz-Four-Contractions,
Yukawa
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