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VIRTUAL PARTICLES by Robert Nemiroff
VIRTUAL PARTICLES by Robert Nemiroff

... If forces result from exchanging virtual particles, and their corresponding real particles always have positive mass, how can any force be attractive? Virtual particles can carry negative momentum. Interference with other virtual photons (of the other particle) can determine attractive or negative m ...
Fault-Tolerant Quantum Computation
Fault-Tolerant Quantum Computation

... huge boost to quantum information field: a single qubit cannot survive decoherence, but a set of qubits can; “together we stand, divided we fall”  The propagation of the error is prevented by using fault tolerant recovery after storing or processing the information, and by using fault tolerant gate ...
r2 - SIUE
r2 - SIUE

... In this and the remaining chapters, we address a few traditional philosophical issues in the light of quantum mechanics. The problems raised are complex, and for this reason the discussion is not only more introductory than usual but also often centered on the orthodox interpretation. However, it sh ...
Latent Dirichlet Allocation for scientific topic
Latent Dirichlet Allocation for scientific topic

Physical Origin of Elementary Particle Masses
Physical Origin of Elementary Particle Masses

... etc, the concept of mass has never been defined in an unambiguous way, not even in classical physics. In fact, Jammer [1] has been able to write two whole monographs on this thorny subject, concluding that nobody knows what mass really is. Furthermore, and this is a problem even for the most pragmati ...
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On the possibility of negative electron mobility in a decaying plasma
On the possibility of negative electron mobility in a decaying plasma

... electron from the remaining electrons. The technique was shown to be in excellent agreement with the results obtained without such replacement [32] for general benchmarks. The code employs the technique of keeping the number of test electrons fixed by effectively introducing a constant collision fre ...
Electron—Proton Twins, Orderly Arranged in The Inside of Bioatoms
Electron—Proton Twins, Orderly Arranged in The Inside of Bioatoms

... photons) which holds electrons and nuclei (protons) together in the atoms [3]. But up till now quantum theory has never provided a practical model of how electrons and nuclei (protons) can absorb and emit photons [3]. This is Copyright © 2012 SciRes. ...
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1987 onward

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DCMPMS - Department of Condensed Matter Physics and Materials

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... responsible for the existence of a discrete energy level structure in each ion. Each qubit can be stored in two of those internal levels, which we will denote by |0> and |1>. These levels have to be very long-lived, such that they are not disturbed during the computation. This can be achieved, for e ...
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Learning about order from noise Quantum noise studies of

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hosted here - Jeffrey C. Morton

... example, the explanation of arithmetic (natural numbers and their operations) in terms of operations in the category of finite sets. This reverses the act of counting, which is thus a form of decategorification. There is a category FinSet, whose objects are finite sets and in which an arrow with sou ...
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... and put j = 0, i.e. kill y-component of B field. From now on we adopt this convention and write DÎ R instead of ∆. Let us note that we can also choose j = Π, than have in effect both positive and negatives vaules for D. A priori the two choices are distinct and this will have some consequence below. ...
Quantum Optics - Department of Physics and Astronomy
Quantum Optics - Department of Physics and Astronomy

... Figure 22: Counts in A versus coincidences in AB, AB’ and ABB’. The values were integrated over a period of 1.0s. The collection was made over a window of 40s.....................................................................45 Figure 23: Counts for detectors A, B, and B'. Photon counts from B and ...
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Quantum Stat Mech Primer

Resonant reflection at magnetic barriers in quantum wires - ITN
Resonant reflection at magnetic barriers in quantum wires - ITN

... at the Fermi level close to the reflection resonance 共see Fig. 4兲, where the sum of the probability densities 兩⌿1兩2 + 兩⌿2兩2 of the two wave functions 共belonging to the first and second energy levels of the quantum wire兲 as well as the corresponding current-density distributions are plotted as a func ...
Peering Inside Atoms
Peering Inside Atoms

... oscillator. The device can potentially be used as a new frequency reference to accurately keep time in GPS, computers, wristwatches and other devices, researchers said. Other potential applications that could be derived from this metamaterial-based platform include high precision sensors and quantum ...
Mass of the Electron Motivation for the Experiment
Mass of the Electron Motivation for the Experiment

... Turn down all the voltages to their minimum, then turn on the power supplies. Let the heater voltage (marked “amplitude” on the Pasco supply) warm up a few minutes and then apply about +150 V accelerating voltage (on the Heathkit supply). Adjust the heater voltage so that you obtain a fairly sharp b ...
Quantum Speed-ups for Gibbs Sampling
Quantum Speed-ups for Gibbs Sampling

Maximizing the Hilbert Space for a Finite Number of Distinguishable
Maximizing the Hilbert Space for a Finite Number of Distinguishable

56 COPYRIGHT 2006 SCIENTIFIC AMERICAN, INC.
56 COPYRIGHT 2006 SCIENTIFIC AMERICAN, INC.

... This mathematical structure describes The experiment by Goldman’s team all the ways that a given row of threads involved abelian anyons. Nevertheless, can be braided together. Any braid can theorists have strong reason to believe be built out of a series of elementary opthat certain fractional quant ...
Another Philosopher Looks at Quantum Mechanics - SAS
Another Philosopher Looks at Quantum Mechanics - SAS

... I present these three conditions explicitly because they can still bear on newer accounts developed since Putnam first wrote. It is, for instance, open to question whether Arthur Fine’s prison models account (1982) in which some kinds of particles ...
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Quantum electrodynamics



In particle physics, quantum electrodynamics (QED) is the relativistic quantum field theory of electrodynamics. In essence, it describes how light and matter interact and is the first theory where full agreement between quantum mechanics and special relativity is achieved. QED mathematically describes all phenomena involving electrically charged particles interacting by means of exchange of photons and represents the quantum counterpart of classical electromagnetism giving a complete account of matter and light interaction.In technical terms, QED can be described as a perturbation theory of the electromagnetic quantum vacuum. Richard Feynman called it ""the jewel of physics"" for its extremely accurate predictions of quantities like the anomalous magnetic moment of the electron and the Lamb shift of the energy levels of hydrogen.
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