Next Generation – World’s First Entangled Atomic Particle Communication and Holographic Quantum Memory

click to see Nature article


It has been shown previously by Michael E. Thomas that controlling and monitoring the exchange of electric fields, electromagnetic fields, electrostatic fields, UV photons, electrons , and displacement of the central nucleus of the ferroelectric molecules on a disk , tape, drum or plate will allow the polarized entangled atoms to function as an “ Atomic / Photonic / Quantum Switch “.

The US Patent office says Michael E. Thomas is the first person in USPTO history to teach the art of photon induced electric field poling a ferroelectric molecule to be used as an " Atomic / Photonic / Quantum Switch ", i.e., first-to-invent and first-to-file for a unique device. Thomas' patents expire in 2020.

Molecular dissociation following Thomas' patents cover methods for a non-contact photon induced electric field poling using UV space charge fields at the same wavelength as a molecular transition will create controllable clouds of electrons (exciton-polaritons) in harmonic waves (Plasmon). Some organic/inorganic molecules have resonant valence orbit electrons that under the proper UV space charge field photo excitation will allow polarized conduction band electrons (polarons) to move freely for a short time (Popular Inversion). Plasmon known as spin polarized electric current (polarons) along with the electric field present provide a mechanism for ferroelectric perovskite molecules central atom to switch geometric positions. The unique concept of resonant absorption excitation by UV/Blue laser light illumination causing molecular dissociation and simultaneous electric field application ( Pockels effect ) can be used for writing 2D Area or 3D volume data so when it is read back having coherent interference waves in a beam of Soliton Wave photon radiation (below popular inversion).

The single frequency below popular inversion creates many bright or dark bands from the UV light birefringence that are in phase or out of phase with one another. The diffraction of the Soliton Wave by the bistable state nucleus in the center of ferroelectric dipole molecule can therefore be represented as a binary 0 or 1 having either positive and/or negative index of refraction.

Method for writing and reading 1 nm to 300 nm data cell sizes is proprietary.

In all of the discussions, PZT is shown for simplicity of presentation but it is assumed all other organic/inorganic high-k dielectric sol-gels, polymer, ceramic, metals, rare earth manganites and crystalline multiferroic - ferroelectric molecular materials , i.e., lithium niobate , lithium tantalate, PLZT, PZTN, BST, SBT, LBS, VO2, KTP, KTaO3, RTP, GeTe, BaSr2/FeMoO6KNb03, SrRuO3, SrRuO7, BaTi03, BaMgF4, PbTiO3, PbTiO4, LiNbO2, BBO, LBO, LiNbO3, Fe doped LiNbO3,SrTiO3, SrRuO3, SrCuO2, SBN, KNSBN, BGO, BSO, LiCoPO4, LiI03, LiTaO3, LSMO, BiMnO3 (BMO), LaSrMn, LuFe2O4, CdCr2S4, TbMn2O5, GdMnO3, TbMnO3 PMN–PT, Bi2TeO5, BiFeO3 (BFO),PbZrO3, Pb5Ge3O11, PbZrTiO3, BaSrTiO3, LaMnO3, LaBaMnO3, LaCaMnO3, LaBiMnO3, CaMnO3, CaSiO3, CeMnO3, MgSiO3, YMnO3, LaGaSiO , LGS, Ge2Sb2Te5, InAgSbTe, TbMnO3, KDP, KDP ,KD*P, CCTO, CdCTO, ADP, SASD, LAP, BBT, BBN, BBT1, ABMO, ABTO, Urea, POM, TGS, ORE Minerals, ferroelectric polymer "polyvinylidene fluoride" (PVDF), PMMA, lead germanate like lead telluride PbTe and lead selenide PbSe, CdZnTe (Zinc Cadmium Telluride), Zinc Oxide, ZnO4-Bromo-4'-Methoxyacetophenone Azine, alexandrite, chalcogenide , antimony telluride ( Sb2Te3 ) and many other III-V, II-VI, IV-VI, transistion metal and ceramic semiconductor materials will be investigated for their volume optical storage properties as it applies to Michael E. Thomas' Patents on Non-Contact Photon Induced Electric Field Poling.

What some of the over World's Top Post Doctoral PhD's Scientist at MIT, GIT, Purdue, Harvard, Yale, Calpoly, UF, UT, UCB, UCLA, USC, UCSD, NYU, Los Alamos, ORNL, LLNL, Sandia Labs, JPL, Fermi, CERN, Max Plank Institute, Russian Academy of Science, Oxford, Cambridge, Imperial College, IIT, Osaka University, Chinese Academy of Science, and many other colleges and universities are saying about their desire to be part of the Colossal Storage Research Team .

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An Atomic / Photonic / Molecular / Quantum / Spintronic / Holographic Switch is the method of using a UV laser atom nanoparticle optical switch defined by a non-contact terahertz nano/microwave electric field modulator using attosecond, femtosecond, or terahertz UV photons simultaneously to alter properties of ferroelectric molecules for data and light expression. Through the use of UV photon induced electric field poling and dynamically changing the internal geometry of individual ferroelectric atoms in a 3 dimensional optical crystal coated on a high / low velocity substrate.

click to see Nature Physics article

The UV laser diodes and electric field transducers of the Integrated Read/Write Head can be used in any combination or sequence to control the molecules which include UV/blue photon frequencies and quantum energy level as well as Nano/Micro electro static field strength (voltage) and switching field densities (frequency). Certain crystals also exhibit a linear electro-optic effect such that the birefringence occurs when it is placed in an electric field and a beam of light is passed through the sample in the direction of the field.

Ferroelectric densities of .2 to .5 Petabits = 200 to 500 Terabits sq. in. / 40 Petabits = 40,000 to 100 Petabits = 100,000 Terabits cu.cm. or 200,000 to 500,000 Gigabits sq.in. / 40,000,000 to 100,000,000 Gigabits cu.cm. with symmetrical read / write times of < 10 picoseconds for 100 year non-volatile storage having infinite rewrites.

Ferroelectrics space age material that has been shown to have robust Nuclear / EMF / Cosmic radiation protection exceeding all other materials used in data storage and display technology.

Normally the 1.3 to 5 nanometer molecule can switch at < 10 picoseconds while maintaining non-destructive readout of ferroelectric bistable properties at a 5 nanometer cell size.

This is not the end by any means as Tohoku says their target is 4 Petabits a sq. in or 375,000 Terabits cu. cm. using a .4 nanometer cell size.

Colossal Storage will not use complex wiring schemes that have impedance, heat, and reliability problems but instead will exceed any storage devices proposed and would enable a storage density of more than 100,000 terabits per cubic centimeter. A ferroelectric storage drive device the size of an iPod nano or 3.5 inch drive could hold enough MP3 music to play for 300,000 years without repeating a song or enough DVD quality video to play movies for 10,000 years without repetition. It is therefore possible to discuss various theories of creating future Data Storage Systems and Quantum Computers that can be entangled in time and space that will allow the device to function as 2 independent information collection systems in the virtual universe where practical applications for entanglement, such as the possibility of sending encrypted information by means of entangled particles even if the other particle is a million miles away.

The first devices using entangled qubits will use optical fiber cable to make optical connections with the hope of eventually going to the ultimate theoretical application of a wireless or cable less quantum computing device as illustrated by the animated gifs.

For the first time in history it will be possible for quantum computers, optical computers, entangled logic gating, and encrypted communication devices.

UV Photon Induced Electric Field Poling of ferroelectric non-linear molecules at different UV quantum energy (popular inversion / below popular inversion) can be used to create UV, soft-x-rays (also known as EUV, for extreme UV/ultraviolet light), blue, infrared, green, yellow wavelength photon pairs allowing this quantum cryptography scheme to encode data in the time of arrival of laser pulses along with the polarization or phase of photons that can be transmitted over optical fiber to an optical AND gate without destroying the photon encrypted data pair.

Michael E. Thomas Invented and Patented the "Theory of Photon Induced Electric Field Poling" in 1998. Since then many colleges, universities, and online reference sources around 2006 like Wikipedia have now included his theory in their teaching and publications.

Molecular dissociation following Thomas' patents cover methods for a non-contact photon induced electric field poling using UV space charge fields at the same wavelength as a molecular transition will create controllable clouds of electrons in harmonic waves (Plasmon). Some organic/inorganic molecules have resonant valence orbit electrons that under the proper UV space charge field photo excitation will allow polarized conduction band electrons to move freely for a short time (Popular Inversion). Plasmon known as spin polarized electric current along with the electric field present provide a mechanism for ferroelectric perovskite molecules central atom to switch geometric positions. The unique concept of resonant absorption excitation by UV/Blue laser light illumination causing molecular dissociation and simultaneous electric field application ( Pockels effect ) can be used for writing 2D Area or 3D volume data so when it is read back having coherent interference waves in a beam of Soliton Wave photon radiation (below popular inversion).

The single frequency below popular inversion creates many bright or dark bands from the UV light birefringence that are in phase or out of phase with one another. The diffraction of the Soliton Wave by the bistable state nucleus in the center of ferroelectric dipole molecule can therefore be represented as a binary 0 or 1 having either positive and/or negative index of refraction.

Method for writing and reading 1 nm to 300 nm data cell sizes is proprietary.

Michael E. Thomas has provided evidence that this device indeed is a source of entangled electrons / ions / atoms / molecules / and plasma. Quantum data states based on UV Interference using polarized entangled electrons / atoms / ions / qubits / and quantum dots having generalized position information can be realistically coupled by the entangled particles that can be controlled.

The possibility of being able to instantaneously transfer encrypted information anywhere in the universe could be reality someday.

Information communication in the world between 2 sources will be done in the most secured method using entangled particle holographic optical data nanostorage.

Albert Einstein never liked entanglement. It seemed to run counter to a central tenet of his theory of relativity: nothing, not even information, can travel faster than the speed of light.

In quantum mechanics, all the forces of nature are mediated by the exchange of particles such as photons, and these particles must obey this cosmic speed limit. So an action "here" can cause no effect "over there" any sooner than it would take light to travel there in a vacuum.

But two entangled particles can appear to influence one another instantaneously, whether they're in the same room or at opposite ends of the Universe.

Einstein called this ‘spooky action at a distance’ - spooky because there is no known mechanism for such an interaction, and because it would entail that things can be affected by events which, in some frame of reference, haven't happened yet.

Quantum entanglement occurs when two or more particles interact in a way that causes their fates to become linked: It becomes impossible to consider (or mathematically describe) each particle's condition independently of the others'. Collectively they constitute a single quantum state.

Austrian physicist Erwin Schrödinger in 1925 showed that if two particles are prepared in a quantum state such that there is a matching correlation between two ‘canonically conjugate’ dynamical quantities — quantities like position and momentum whose values suffice to specify all the properties of a classical system — then there are infinitely many dynamical quantities of the two particles for which there exist similar matching correlations: every function of the canonically conjugate pair of the first particle matches with the same function of the canonically conjugate pair of the second particle.

Thus system No. 1 ‘does not only know these two answers but a vast number of others, and that with no mnemotechnical help whatsoever, at least with none that we know of.’

Schrödinger coined the term ‘entanglement’ to describe this peculiar connection between quantum systems:

When two systems, of which we know the states by their respective representatives, enter into temporary physical interaction due to known forces between them, and when after a time of mutual influence the systems separate again, then they can no longer be described in the same way as before by endowing each of them with a representative of its own. I would not call that one but rather the characteristic trait of quantum mechanics, the one that enforces its entire departure from classical lines of thought. By the interaction the two representatives [the quantum states] have become entangled.

Entangled Particle Holographics will be the name given to this hallmark discovery by Michael E. Thomas in which the event history of optical entangled ferroelectric molecules is continuously emitted (broadcast) non-locally and is received by and interacts with the other entangled particle pair's matter in its environment through a subtle process of exchange of quantum information. This is an extension of the known process of quantum emission/absorption and analogous to non-local quantum entanglement of the ferroelectric particle pairs matter.

Entangled Particle Holographics extends the reach of quantum physics beyond the atom and subatomic particles, not only deeper into the optical media data quantum substrate, but also into the larger world of encrypted data transmission. It brings the role of information in physical theories to the same level of importance as energy itself. Entangled Particle Holographics focuses not so much on ferroelectric particles as on the relationships and dynamic exchanges between energy, matter, photons, electric fields, and information. Entangled Particle Holographics looks into four basic quantum processes, heretofore largely ignored and left unexplored by science. They are as follows:

Entanglement:

The state or condition in which an enduring confluence occurs between atomic and subatomic particles during energy exchange or other processes, characterized by a commingling of particle attributes, such as spin, EMF, and quantum energy of shared interchange electrons in a persistent and congruent manner. Associated with entanglement is an instantaneous non-local, exchange of information through the use of atomic holographic optical storage medium of quantum correlation.

Coherence/Quantum Interference Correlation:

The observation made under experimental conditions that paired particles do not move or behave independently when involved in the same process or in energy transfers, as predicted by classical theory, but rather amalgamate in a sustained fashion and remain enjoined as an enduring discrete ensemble of particles with compatible spin and polarization characteristics, regardless of what paths, vectors or trajectories are adopted subsequently.

Non-Locality (near & far):

The omnipresent and omnidirectional transfer of influence at the quantum level instantly, simultaneously and ubiquitously, through wave-like or field-like resonance wherein spatial and temporal factors are inconsequential.

Interconnectedness:

The state of a universe that is considered to be unified and joined together holistically, through a process of non-local resonance occurring within the underlying zero-point field, that connects all matter, energy and information in the cosmos.

Entangled Particle Holographics suggests that all things in the universe are interconnected informationally. It also maintains that underlying this unity or oneness is the mystifying and mysterious dance between all matter and energy and information. Simply put, the basic promise of Entangled Particle Holographics is that the most profound insights about our universe will be discovered among the most subtle, implicit, and invisible phenomena of the sub-quantum level.

One result of Austrian investigators of the Institute of Experimental Physics of Vienna set a new record of teletransportation (Quantum Entanglement) of ' Photons crossed ' in the laboratory. The scientists had obtained quantum information from fiber glass of 800 meters of length, a canal of the Danube river the being crossed transversally and covering a distance of 600 meters, published in 20 of August in the scientific magazine British "Nature".

Teletransportation characteristics between two separate atoms, guided for university professor Anton Zeilinger, is based on the phenomenon of the ' Photons Entangled ' described by the Nobel Prize Albert Einstein as "Spooky effect at a distance".

One is about an effect of quantum mechanics that is not comparable with any phenomenon of the worlds current dimensions, since the two pair entangled photons, working in opposing directions, remain entangled between themselves.

Determining polarization of one of the photon, can be counted exactly on the other and has the same polarization, being identical of the first one. When transferring the quantum state exactly of a particle to another one, the scientists will have given a new step for teletransportation of substance. According to David Wineland, of the National Institute of Standards and Technology of Boulder, Colorado (U.S.A.), teletransportation of information between atoms is the key for powerful quantum computers, that must start to appear within one decade."

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This Colossal Storage Website (web start date Sept 1, 1999) is constantly being updated with the latest research, press, and breakthrus in Ferroelectrics and other Future Storage nanoTechnologies.

FeDrive and FeHead are the trade names for the integrated semiconductor ferroelectric device concepts of Colossal Storage, Pocomoke City, Md.

Michael E. Thomas wants to License or Sell his U.S. Patents, # 6,028,835 2/22/00 and # 6,046,973 4/4/00 , and USPTO .

This home page contains, lots of useful information such as theoretical ideas, application data, future concepts , and future marketing data and other nanotechnologies under development.

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