It would be good if the principals of quantum entanglement applied to the emissions of exotic particles from the nucleus of atoms.
Because we could be able to produce `exotic particle beam’ lasers and cause `interesting effects’.
Such as having `BB sized pellet' of `U239 plated with entangled U238’ suddenly detonate remotely `from some of the entangled U238' being blasted in a nuclear reactor core in a remote area. Such controlled explosion could form the bassis of a nuclear rocket propulsion system. Not to mention a nightmare `mini gun..
In any case, it gave me some thoughts about how to `intensify the emission images in the `Quantum Matrix Display’
When three mirrors are placed in right angle alignment like in the corner of a room they reflect photon in the same direction from where they came.
The effect could be useful if the surface a reflective were modified with such triangular reflective indentations.
In the bathroom your flat mirror image would follow you around the room even when you’re not standing in front of the mirror.
Between the sheet of modified reflective material and the sheet of convexly modified glass with quantum entangled material, there would be some `stimulatable materials’ coherently amplifying the emissions from the QMD.
Offcourse the display would be based the other way by emitting inwards then reflecting an amplified image outwards.
Something to think about.
Assuming the `stimulated emission like’ image amplification system in the QMD works. We would like 3D Colour QMD television and internet `without needing to wear 3D glasses’
Then the pixels in every area of the QMD have to be `evenly specialised to produce’ `Green’ `Red Yellow Blue’ spectrum amplifications (as well as surgical x-ray laser spectrum if you like lol)
In the input `glass pane’ would have filters restricting the pixels to individually evenly respond to a specific spectrum input.
The manufacturing process would be complex as is `building up the technological conception like I mentioned in the beginning of this chapter in my thread. Would be good but, if it worked wouldn’t it.
mooncamera's
8th October 2012 - 11:56 PM
QUOTE (mooncamera's+Oct 8 2012, 01:50 PM)
Assuming the `stimulated emission like’ image amplification system in the QMD works. We would like 3D Colour QMD television and internet `without needing to wear 3D glasses’
Then the pixels in every area of the QMD have to be `evenly specialised to produce’ `Green’ `Red Yellow Blue’ spectrum amplifications.
In the input `glass pane’ would have filters restricting the pixels to individually evenly respond to a specific spectrum input.
The manufacturing process would be complex as is `building up the technological conception like I mentioned in the beginning of this chapter in my thread. Would be good but, if it worked wouldn’t it.
Given the `spectrum amplification systems’ in the colour 3D QMD set work. The input glass pain has to be placed in front of an emission screen to enable telecommunications in both directions instantaneously.
Analogously to the way `regular TV screens’ build up an image `line by line’ the QMD could employ a method of `flicking from front to rear glass’ panes very fast.
I should say, I was only `joking’ about putting `x-ray laser’ pixels in the emission display. I wouldn’t really waste valuable pixel space on such features there.
We would like to see you `in dark rim frames’ with `mm waves’ around the edges of the set. If someone `needs their head examined then dealt with’ in a `video arcade manner with laser pistols’ the `high power particle beam lasers’ would ‘be located/contained in the edges as well’.
Now we have to build up the functions to work like a `transparent window pane’ ( it’s not transparent because of the `modified reflective emissions screen’)
This would be accomplished by building an additional suitably entangled on the QMD behind it in the other direction. Giving people a `good look in and out’ from numerous `vantage points within the galaxy instantaneously’
The beauty of a medium such as this would be the fact that it’s `Quantum Telecommunications’, and completely unrestricted by the speed of propagation between vast distances.
mooncamera's
9th October 2012 - 05:40 AM
QUOTE (mooncamera's+Oct 8 2012, 11:56 PM)
Given the `spectrum amplification systems’ in the colour 3D QMD set work. The input glass pain has to be placed in front of an emission screen to enable telecommunications in both directions instantaneously.
Analogously to the way `regular TV screens’ build up an image `line by line’ the QMD could employ a method of `flicking from front to rear glass’ panes very fast.
I should say, I was only `joking’ about putting `x-ray laser’ pixels in the emission display. I wouldn’t really waste valuable pixel space on such features there.
We would like to see you `in dark rim frames’ with `mm waves’ around the edges of the set. If someone `needs their head examined then dealt with’ in a `video arcade manner with laser pistols’ the `high power particle beam lasers’ would ‘be located/contained in the edges as well’.
Now we have to build up the functions to work like a `transparent window pane’ ( it’s not transparent because of the `modified reflective emissions screen’)
This would be accomplished by building an additional suitably entangled QMD behind it, in the other direction. Giving people a `good look in and out’ from numerous `vantage points within the galaxy instantaneously’
The beauty of a medium such as this would be the fact that it’s `Quantum Telecommunications’, and completely unrestricted by the speed of propagation between vast distances.
Come to think of it, some of `modified surfaces and materials' conceptualised in my 'QMD design' could have an application in the `photonic interconnection’ of `neural network’ computer chips.
There has to be a `computer system built in' in between the sides of `both functional window panes'.
Integrating circuit on modified surfaces would give more surface area to place directional inputs and outputs.
Something more to contemplate.
MDT
9th October 2012 - 02:46 PM
Holograms makes use of light interference. Is is possible to use a screen filter that will create light interference or use two full sets of pixels that are slightly out of phase; screen within a screen.
mooncamera's
10th October 2012 - 02:23 AM
QUOTE (MDT+Oct 9 2012, 02:46 PM)
Holograms makes use of light interference. Is is possible to use a screen filter that will create light interference or use two full sets of pixels that are slightly out of phase; screen within a screen.
It sounds interesting and probably worth looking into.
mooncamera's
17th October 2012 - 01:12 PM
QUOTE (mooncamera's+Oct 7 2012, 10:49 AM)
Evan a small experimental `quantum entangle loop’ teleporting a `digital laser signal’ from a `remote control module with a video camera’ could have been used to control a `Mars probe with one finger’ from Earth instantaneously without the signal delay associated with hundreds of millions of miles.
The coming maned Mars Landing `has to be' live with such `quantum entangled' instantaneous telecommunications
mooncamera's
12th December 2012 - 03:53 AM
QUOTE (mooncamera's+Oct 17 2012, 01:12 PM)
The coming maned Mars Landing `has to be' live with such `quantum entangled' instantaneous telecommunications
Mineral Transportation: Spacecraft Freeways
Space carriages `in themselves' could become the `permanent interconnections between planets' merely by flying from an area and landing in another with such technologies an `angular-momentum based mass inductors’
mooncamera's
13th December 2012 - 02:19 AM
QUOTE (mooncamera's+Dec 12 2012, 03:53 AM)
Mineral Transportation: Spacecraft Freeways
Space carriages `in themselves' could become the `permanent interconnections between planets' merely by flying from an area and landing in another with such technologies an `angular-momentum based mass inductors’
If `journalistic articles' from the `previous century' are to be `believed', then even the `Tesla Versions’ could work, something’s got to give: `Mt:mT’ `not all at once offcourse', but given enough power like with the Hadron.
mooncamera's
27th April 2013 - 10:27 AM
QUOTE (mooncamera's+Mar 11 2012, 01:15 AM)
Mirrors and Glass Probably
Every seeming mirror, aswell as transparent glass pane, lens, and Iris, shall probably be interconnected with quantum computers. Enabling the owner of such technology to tune into the images from whatever window pane.
Your windshield could eventually have a phone number. Further more, much like the little boy in the art gallery crawling into a motion portrait to grab a cream pie from an attractive young waitress, it would be possible to call up an image from somewhere in the world onto your quantum glass window and enter the virtual world of the image within the quantum glass whilst telepathically controlling the direction of your outcomes within the quantum computer.
It would be possible to enter and play a 1000 years but nobody in the room would noticed you enter, and you would come out almost at exactly the same time as you entered (mt = MT dilation) whilst not having physically aged a moment.
Good place to brush up your tertiary courses and training.
Quantum spatial interconnection.
People who have watched documentaries about quantum physics on `Discovery Channel' are probably familiar with the suggestion of `an atom being able to exist in another place in the universe the same time'. And by now most people would regard it as quantum fact.
There must be an interconnection between the two positions through another spatial dimension `instantaneously'.
But what to make of it? If we could determine and control `what atoms exist in two separate areas at the same time' it would be a Fantastic beginning.
If we could build the technology to make a collection of atoms exist into separate areas, tremendous opportunities would become available.
Imagine a table. The same table. Existing into different rooms. Everything on the table and under the table exists in both rooms.
This would be the beginnings of a `Quantum Spatial Enternet'. In one room would be a soup kitchen. When a `bowl of soup' was placed on the `table' in the soup kitchen it would appear on the `same table' in the next room.
It seems a logical progression from the notion of an atom existing into places the same time, `but how?'
mooncamera's
18th May 2013 - 12:49 PM
QUOTE (mooncamera's+Apr 27 2013, 10:27 AM)
Quantum spatial interconnection.
People who have watched documentaries about quantum physics on `Discovery Channel' are probably familiar with the suggestion of `an atom being able to exist in another place in the universe the same time'. And by now most people would regard it as quantum fact.
There must be an interconnection between the two positions through another spatial dimension `instantaneously'.
But what to make of it? If we could determine and control `what atoms exist in two separate areas at the same time' it would be a Fantastic beginning.
If we could build the technology to make a collection of atoms exist into separate areas, tremendous opportunities would become available.
Imagine a table. The same table. Existing into different rooms. Everything on the table and under the table exists in both rooms.
This would be the beginnings of a `Quantum Spatial Enternet'. In one room would be a soup kitchen. When a `bowl of soup' was placed on the `table' in the soup kitchen it would appear on the `same table' in the next room.
It seems a logical progression from the notion of an atom existing into places the same time, `but how?'
Yes well;
It's not easy play playing the forces in 2D flatland either;
Consider string theory wherin; our 3D universe can be depicted as a 2D Brane (membane)
When/Where two such `brane universes' touched, it cause a big bang beginning to our universe.
Now press your tongue into the palette of your mouth whilst saying `Mucous Membrane' I love talking to myself in such a `Donald Duck' fashion.
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