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BRILLIENT XRAY INCLUDING MORE THAN ONE THRUSTING MAGNETIC-ELECTRICAL RING PORTAL IN THE CENTRAL CRAB NEBULA DYNAMO

Cross references
Spindle.htm   Horse.htm   symmetry.htm   Bilatera.htm   Chandra.htm#crab-vela


Crab nebula central dynamo image source

Click for original

A vertical cowling opens to where?, seen in the highlighted window.

Figure 1





Apparent differences in the opening cowling between the left and right image views in Figure 1 above, are shadings in enhancements, the blue shading (right) has more succinct seen details as to the opening itself. The blue shades over other colors reveal details, which are vanished in the one-color brown tone window in the left image, however, an abrupt vertical wedge jutting out to the horizontal thin ring is seen in stereo pair view easily in the brown view. (Gently merge the two images together by going cross eyed to see stereo).

ENERGY POLES

The artifact (cowling with horizontal arc entering it) seems to be another pole in that the whole formation there, even though diffuse in this image, is coherent. We can assume an opposite pole on the other side of the image hidden from view behind the scenes, perhaps there is also a fourth pole opposite to the jet issuing to the left, except it may be a dymamically different functionator not having a similar jet in appositive.

Click for original



Image 2

VEERJET

The fact that the left jet abruptly bends down indicates the core generator source abruptly shifted position, rising up resulting in a more horizontal jet, also, a possibility that the core source is moving backward leaving a more stationary jet behind, rather than the jet forcing forward at high velocity, if this was the case (jetting foreward at high velocity) it would be harder to explain the abrupt kink in the jetpath.

Matter streaming out from the center of the cyclops is running over rims of high concentration bending when passing over the rims, getting slowed, hence bending, like light seen bending a straw when the straw is immersed in the slower light speed media of the water.

TWO-JET IONNIC DIFFRACTION PATTERN

Abrupt angle shift may be of a different cause.



The jet may be a spray of charged particles rubbing over the sundry red gas. There are actually TWO jets, one initiates from the left side of central actual, and hooks almost instantly around straight forward, then down. The other streams from the 4 oclock position behind the star, it too out in the right hooks almost instantly forward and keeps coming on toward at a slightly lower incline to fade into red massworks.

A split beam ionnic defraction is at work in the star's brain.

The shorter second jet stream would be much longer if there was more mass out there along its path, with upper surface high enough that the stream can spray over it lighting the surface up. Between the two jets is a valley in the red gas, which is why only so much of the gas can be illuminated.

NEXT BELOW

An earlier (1999) chandra xray image sourced here and here shows the left jet and its bend in more simplified isolation. Notice below that the jet initiates nearly at the neutron star. In the recent image (2003) above, the bend in the jet has moved out to a larger ring's circumpherence, suggesting all too clearly that the central generator is moving backward relative to the forethrusting jet which, inexorably growing in length along it's polar plane shaft before the downkink, is being left behind like a contrail, rather than the whole jet moving foreward to the left as a solid form object.

The speed at which the thin central shaft straight out from the core (before the kink) is lengthening, suggests the jet is recent, or at least, an upjog shift in the alignment of the inner spinner is recent (not from a thousand years ago).

Figure 2

The 1999 image is used in GIC here. The spindle itself changes at remarkable speed only a basic dynamo cross-poles formation continues year after year the details constantly being replaced by new details.

IS THE JET DISSIPATING





See how the two jets compare. Slightly different enhancements are used for each of the two different images because each enhancement shows important subtle differences in details. It is possible to merge each pair of two into stereo by going cross eyed and struggling. Certain details actually merge showing which details are more in a steady states. Many thin rings like electricity around magnetic strands, expecially around the cyclonnic's left hand thick arc, can be seen in the 3D mergers.







For that matter, the 1999 image above shows two bends, the second further out aims more straight down and is thicker, spreading out. The jet in Image 2 above does not really show two bends, in fact the jet in the more recent (2003) image seems to be fading. In particular, notice how little is seen in jet matter leading from the upper bend back toward the neutron star, in Image 2, this inner area close to the star seems to be becoming transparent with a few vague residuals of 'jet'.

Are we looking at a phenomena where jets can abruptly switch on, and off? Time will tell.

The animated movie (source forgotten) reveals how fast the spindle changes beat to beat, tick to tock through time. The movie is used in GIC here

BASIC CONFIGURATIONS AND POLARITIES

There is no point in trying to do an untramar enhancement of the cyclonnics themselves these change in finer details within every few hours.





The basic configuration of the coherent engine can be modelled in analogies that are very accurate. First picture a virtual reality freak wearing headphones from the twenty first century. Better still, picture a robot toy with brain gear on either side of the big round head, except, have one side altered as opposed to the other, for instance one side converged in pyramid blunt conals, (such as seen south/east in the Crab), the other pole on the other side spraying out, that is, opening up, or the cavity into which winds a horizontal strand is vertical in a bi-polar symmetry with the foreward sidepole.

Image 2

The other model is found in an IBM mainframe computer as its memory core. From the first mainframe days of 8 bit datas the mememory stored a maximum of 64K. In the year of the final generation of mainframes, 1989, retired by the advent of desktops which had far more power but not the speed, the basic same design was still in use for IBM's mainframe memory core which as before could be unclipped, pulled out, and replaced. A large round central shape housed the memory disks in the form of 8 large spinning plattens which combined stored 1.2gig ram and 1.2gig memory. Jutting out on both sides of the IBM were smaller more rectangular shaped housings for the magnets which read and wrote the spinning disks.

So, in this IBM is a central axle - a spinning shaft polarized front to back - and laterally out each side magnets operating the units store and recall. If modelling is correct, the coupling extending out the sides of the Crab nuclear might be magnetically operating on the forces along the central spin axis, causing the jet to propel forward from the center of the core out the axis foreward pole vector. The only questions remaining are, which is north vrs south pole on the spin axis, and which is north vrs south pole in the side couplings.

As for bi-lateral symmetry, a close inspection using virtual 3D (merge the two side by side images together into one by gently going crosseyed) shows that behind the central spinning spindle is an upflare, in bi-lateral symmetry opposite to the jet issuing into the foreground on a downward vector.

For instance, in Image 2 above, the south/east pole actually arcs forward in a thick curve, the portal where the horizontal strand enters, is vertical. One the opposite side of the spindle, portals are seen but these (their openings) are bent down. The actuals strongly suggests electrical forces winding horizontally around magnetic induction tubes which wrap around the spindle. Also, the magnetic induction tube is not circular, it is flattened, much wider in its east/west cross section than in its north/south cross section.

In the lower south east quadrant, the cyclonnics comprise thin rings which jut forward arcing into the lower left magnetic box. On the north/west side, wide cyclonnics dive vertically down around into openings, a major 90 degree twist in the overall dyanamo's symmetries.

A second distinct feature, almost too mundane to mention except clues as to exactly how the dynamo is behaving are adding up, that the forward face toward us is wide open and vertically flat with a single narrow jet streaming out of its center, whereas on the rearside a long tapering tail starting as wide as the front face extends rearward not a point but into final ragatags, basically, topologically, not unlike the hood of a monk.

It is the finite non chaotic overall shape that has drawn notice, despite risks of being branded mundane too tautalogical, thinks about nothing, all the time. Nope. thinks correctly every time.

Cross references
Spindle.htm   Horse.htm   symmetry.htm   Bilatera.htm   Chandra.htm#crab-vela



STANDARD BASIC SHAPE FOR PUSLAR NEBULA?

Here are images from an earlier study that was never posted at visitastronomy.com

The basic dynamic shape of the Crab nebula may be a standard for many pulsar seething magnetic furnaces.

This, next, is labelled B1509-58 by Chandra, its source site loads faulty so I have withdrawn the link.

The Chandra B1509-58 original is 3rd below (at left second row). A great deal of important content, hidden by dim enhancing as seen in the original, is available for making theory decisions by the simple expediency of more light in the image, as seen in the first pair next.





Next, is the 1999 Chandra x-ray image of the Crab Nebula showing a jet issuing to the left then elbowing abruptly downward. The Crab is relatively close by. The B1509-58 pulsar image above, not distinct in detail, shows an identical form of jet, with an abrupt downbend.



More crab images are   here   and   here.




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