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Turing Machine
Turing Machine

... Turing in 1936 in order to address Hilbert's Entscheidungsproblem. It is sufficiently simple so that various mathematical theorems can be proven about it. In particular by using this model Turing was able to show that the Entscheidungsproblem must be answered in negative, i.e., there is no mechanica ...
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... Chakras and Kundalini (complexity building) Internet is physical form of quantum rotes Direct knowing is information based Meaning only exists in Quantum Mind Mind’s eye directs attention and intention God is all powerful & all knowing (we are god) ...
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... much theoretical interest, and it also has practical applications in cryptography, so these discoveries have attracted considerable notice. Feynman’s Question An early investigator of quantum computing was the physicist Richard P. Feynman (1), although he looked at the issue mainly through the other ...
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Quantum Logic and Quantum gates with Photons

... A quantum encoder encodes the state of the input into the two output qubits. It is like a parity check,only this time the a photon is part of a Bell state: In the parity check we had: We can see that for this case this translates to: With the same success probability as in the parity check- ½. ...
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... Hilbert space formalism. Moreover it is a formalism capable of describing both quantum systems and classical systems by means of the same mathematical artillery. The origins of the propositional system formalism go back to [2]. The physical interpretation exposed here is given in [3]. It was realize ...
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... former is given by Maxwell’s theory and the latter by quantum electrodynamics. This year´s Nobel Prize in Physics falls in the realm of these aspects of light: The first part goes to Roy J. Glauber, who showed how the quantum theory has to be formulated in order to describe the detection process. Th ...
people.ysu.edu
people.ysu.edu

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The Role of Optics and Photonics in a National Initiative in Quantum

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Max Born



Max Born (German: [bɔɐ̯n]; 11 December 1882 – 5 January 1970) was a German physicist and mathematician who was instrumental in the development of quantum mechanics. He also made contributions to solid-state physics and optics and supervised the work of a number of notable physicists in the 1920s and 30s. Born won the 1954 Nobel Prize in Physics for his ""fundamental research in Quantum Mechanics, especially in the statistical interpretation of the wave function"".Born was born in 1882 in Breslau, then in Germany, now in Poland and known as Wrocław. He entered the University of Göttingen in 1904, where he found the three renowned mathematicians, Felix Klein, David Hilbert and Hermann Minkowski. He wrote his Ph.D. thesis on the subject of ""Stability of Elastica in a Plane and Space"", winning the University's Philosophy Faculty Prize. In 1905, he began researching special relativity with Minkowski, and subsequently wrote his habilitation thesis on the Thomson model of the atom. A chance meeting with Fritz Haber in Berlin in 1918 led to discussion of the manner in which an ionic compound is formed when a metal reacts with a halogen, which is today known as the Born–Haber cycle.In the First World War after originally being placed as a radio operator, due to his specialist knowledge he was moved to research duties regarding sound ranging. In 1921, Born returned to Göttingen, arranging another chair for his long-time friend and colleague James Franck. Under Born, Göttingen became one of the world's foremost centres for physics. In 1925, Born and Werner Heisenberg formulated the matrix mechanics representation of quantum mechanics. The following year, he formulated the now-standard interpretation of the probability density function for ψ*ψ in the Schrödinger equation, for which he was awarded the Nobel Prize in 1954. His influence extended far beyond his own research. Max Delbrück, Siegfried Flügge, Friedrich Hund, Pascual Jordan, Maria Goeppert-Mayer, Lothar Wolfgang Nordheim, Robert Oppenheimer, and Victor Weisskopf all received their Ph.D. degrees under Born at Göttingen, and his assistants included Enrico Fermi, Werner Heisenberg, Gerhard Herzberg, Friedrich Hund, Pascual Jordan, Wolfgang Pauli, Léon Rosenfeld, Edward Teller, and Eugene Wigner.In January 1933, the Nazi Party came to power in Germany, and Born, who was Jewish, was suspended. He emigrated to Britain, where he took a job at St John's College, Cambridge, and wrote a popular science book, The Restless Universe, as well as Atomic Physics, which soon became a standard text book. In October 1936, he became the Tait Professor of Natural Philosophy at the University of Edinburgh, where, working with German-born assistants E. Walter Kellermann and Klaus Fuchs, he continued his research into physics. Max Born became a naturalised British subject on 31 August 1939, one day before World War II broke out in Europe. He remained at Edinburgh until 1952. He retired to Bad Pyrmont, in West Germany. He died in hospital in Göttingen on 5 January 1970.
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