Colossal Storage Corporation |
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Company description:: Electrons have electro magnetic properties whose electron movement is called electric current that can be measured by the abundance of or lack of electrons in the ferroelectric nucleus called voltage or static charge. Ferroelectric spintronics is the method of using electric fields and photons to alter properties of ferroelectrics molecules.
The technology concept is to use Polarized UV photons having resonant frequencies of the ferroelectric molecule along with Electric Fields to control electron movement, polarity, and EMF fields for optical display imagery and data storage applications.
New phrases like photon induced electric field poling, plasmonic physics, and ferroelectric spintronics were created to talk about the science.
For ferroelectric spintronics to work there needs to be dynamic current flow to cause movement of the electron which has intrinsic properties effected by electro magnetic fields, electric fields, and photon excitation.
For example, when charge carriers like electrons are accelerated (as opposed to moving at constant velocity), a fluctuating magnetic field is produced. This generates a fluctuating electric field, which in turn produces another varying magnetic field.
Generating a perfect spin current by an electric field and UV photons in a high-k dipole dielectric material like a ferroelectrics molecule could then be made reversible, have non-dissipative of power, and not suffer from leakage current lost over time.
It has further been shown in patent 6,046,973 4/4/00 and many animation gifs on the website that ferroelectric molecular write activity is influenced by the introduction of ultra-violet or deep blue light according to The Einstein/Planck theorem of Energy Quantum.
That an induced electrical field along with UV photons helps to create spin polarized electron currents that further alters the ferroelectric molecular properties such as conductivity, intrinsic magnetic fields and intrinsic electrical properties. Removal of the light source and induced electric field leave the ferroelectric molecule in an altered electrical state potential which is non-volatile.
Niels Bohr Atom Postulates states, light excited electrons will stay in their higher energy orbits, i.e., UV or deep blue light with specific frequency and quantum energy excite the electrons of ferroelectric molecules into higher valence orbits and fall back to the normal lower energy orbits when the UV or deep blue light source is removed.
The altered molecular state of the ferroelectric molecule can be Read by using a second deep blue or ultra-violet light source which cause electrons of the ferroelectric perovskite molecule to jump from one orbit to another and back again.
Translating the physics of the electrostatic field (electric lines of force) from the ferroelectric molecule to voltage or data is sensed by the floating gate mosfet transistor.
A Mosfet Nanotransistor that is able to detect small changes in the electrical field potential of the ferroelectric molecule when ultra-violet or deep blue light source is focused on the ferroelectric perovskite molecule.
The read mosfet transistor is a source follower that does not destroy the stored electric field/voltage potential difference of the ferroelectric molecule.
The read voltage output is the recorded field strength in the ferroelectric molecule and is equal to the VCC of the floating mosfet transistor plus or minus the detected electrostatic field strength (electric lines of force) of the ferroelectric molecule.
The stored internal dipole position (remnant displacement of central atoms - remnant polarization) further amplifies any higher orbit electron electrical field potential either positive or negative depending on the dipole position in the ferroelectric molecule and the distance from the UV or deep blue integrated read/write head.
The dipole position of the central atom is always in one of two binary positions which dictates whether the ferroelectric molecule, looking from the top down, is a north south positive polarity or a south north negative polarity electric field.
Removal of the second UV light source (Quantum energy is characterized lower - not to induce electron movement into the conduction band) leaves the ferroelectric molecule in its initial electrical field stored state. More new definition of terms includes light induced positive electrical fields, normal non-induced electrical field , and light induced negative electrical fields.
The stored electrical field potential of a ferroelectric molecule can be made to represent, at least four electrostatic spintronic field states equal to binary information.
Double sided disk and tape can be produced by separating the ferroelectric molecular coating layer by a plastic, metal, glass, or ceramic substrate.
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