Difference between revisions of "Quantum Mechanics"
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Law of excluded middle can be violated by some quantum operations. | Law of excluded middle can be violated by some quantum operations. | ||
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While his original solution created a new mathematics for multiplication, it was realized by Born that this type of multiplication was already known as matrix multiplication and so Heisenberg's solutions was recaat as matrix mechanics, later to be renamed as [[Quantum Mechanics]]. The following will be presented in the matrix formalism that has come to be standard as it was described by Dirac. | While his original solution created a new mathematics for multiplication, it was realized by Born that this type of multiplication was already known as matrix multiplication and so Heisenberg's solutions was recaat as matrix mechanics, later to be renamed as [[Quantum Mechanics]]. The following will be presented in the matrix formalism that has come to be standard as it was described by Dirac. | ||
Revision as of 08:11, 15 April 2023
Contents
Full Title or Meme
This page focuses on the first development of the Quantum Mechanics of the Eventful Universe as developed by Werner Heisenberg.
Context
Werner Heisenberg was not happy with the state of Quantum Mechanics as articulated by the Copenhagen school of Niels Bohr and so went off to an isolated island in the North Sea (for his Hay Feaver) to think through a better solution focused on the observed events. Shortly after this Edwin Schrodinger developed another model based on the flow of a quantum from one event to another known as the wave equation. It was later shown that these two models were consistent with each other in spite of the differences between the models, the wave equation dealt with the flow of the particle and Quantum Mechanics dealt with the event that was observed when the electron was measured.
Problems
The Bohr Model
In 1920 there was a model of a quantum atom that has electrons spinning around a nucleus, that was just discovered by Rutherford, a New Zealander working in Canada and England. Some success was obtained in determining the differences between electron "orbits" as a light photon of a specific energy was emitted and measured whenever an electron "fell" from one orbit to another at a lower energy. Unfortunately, that Bohr model of electron orbits was unable to predict the fine details of the simplest atom, Hydrogen, and Bohr, in the 1920's, was adamantly opposed to the concept of light quanta.
The Particle Model=
Ever since Newton developed his theory of gravitation a fully mechanistic view of moving bodies had led physics to believe that physical laws were deterministic, that is, that if all of the positions and velocities of the physical objets in the unirverse could be know that the entire past and future could also be known. But if we consider a photon to be a particle, then when it is sent through the two slit experiment, we cannot know with certainty where it will land on the detection screen. Many physicists, including Enstein and Bohr rebelled against any such interpretation. Einstein by insisting on certainty and Bohr insisting that light could not be composted of quanta.
Probabilities
It was a know fact that a probability must be in the range of 0 (will not happen) to 1 (must happen). This definition did not work with quantum mechanics.
The Wave Model
The Wave Model was very good at predicting the distribution of light photons (and electrons) impacts on a fixed screen when they were diffracted, as is clear in the "two slit" experiments from the beginning of Quantum Mechanics.
Is it Logical?
Law of excluded middle can be violated by some quantum operations.
Heisenberg's Solution
While his original solution created a new mathematics for multiplication, it was realized by Born that this type of multiplication was already known as matrix multiplication and so Heisenberg's solutions was recaat as matrix mechanics, later to be renamed as Quantum Mechanics. The following will be presented in the matrix formalism that has come to be standard as it was described by Dirac.
Specific Uses
In keeping with the purposes of this wiki the application of Quantum Mechanics to computer and communications applications. Click on the names below for more information.
- The Quantum Computing Threat describes how existing private keys can be exposed.
- The Quantum Information Theory describes how quantum effects can be used create provably secure communication channels.