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Light and the Resolution of the Heisenberg Uncertainty Principle
Light and the Resolution of the Heisenberg Uncertainty Principle

... “quantum tunneling,” that is, the tendency of particles to disappear and reappear. This has been explained by the invocation of myriad extra dimensions. However, the existence of an excessively complex set of extra dimensions is unnecessary in this model, because in this model we simply presume that ...
or string theory
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... modes are super Yang-Mills in 10D. (b) As we said, there must be closed strings (unitarity). The massless modes are N=1 SUGRA in 10D. (c) One can associate a charge to an end of an open string. ...
chapter 5
chapter 5

... “Somebody could still asks: How does it work? What mechanism is represented by the wave function? Nobody has ever found a mechanism behind the wave function. Nobody can explain more that we have just discussed. Nobody will give you an explanation about what is going on at a deeper level. As a matter ...
Long Distance, Unconditional Teleportation of Atomic States V 87, N
Long Distance, Unconditional Teleportation of Atomic States V 87, N

... quantum memories. These slots are gated into the memory cavities, with their respective atoms either physically displaced or optically detuned so that no A-to-B absorptions occur. After a short loading interval (a few cold-cavity lifetimes, say, 400 ns), each atom is moved (or tuned) into the absorb ...
Product Operator - Vanderbilt Center for Structural Biology
Product Operator - Vanderbilt Center for Structural Biology

Coupling Electrons, Phonons, and Photons for Nonequilibrium
Coupling Electrons, Phonons, and Photons for Nonequilibrium

Quantum effects in chemistry - Fritz Haber Center for Molecular
Quantum effects in chemistry - Fritz Haber Center for Molecular

Sheaf Logic, Quantum Set Theory and The Interpretation of
Sheaf Logic, Quantum Set Theory and The Interpretation of

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... modes are super Yang-Mills in 10D. (b) As we said, there must be closed strings (unitarity). The massless modes are N=1 SUGRA in 10D. (c) One can associate a charge to an end of an open string. ...
Lec. 42 notes
Lec. 42 notes

Chapter 6 Electronic Structure of Atoms
Chapter 6 Electronic Structure of Atoms

... 33. The 3p subshell in the ground state of atomic xenon contains __________ electrons. (a). 2 (b).6 (c). 36 (d). 10 Explanation: Since Xe is a noble gas, its subshells will be completely filled regardless of their principal quantum number. Thus the 3p subshell will contain 6 electrons. 34. [Ar]4s23d ...
Molecular rotational spectra formulae
Molecular rotational spectra formulae

... Here the terms before the parenthesis is electronic state specification. X means it is in the ground electronic state (n=0). X may be replaced by A, B, C, … for excited electronic states with n=1, 2, 3, … However, molecules in electronically excited states are rare, because the huge excitation energ ...
Cavity QED
Cavity QED

... Challenges of cavity QED QC • Cavity QED quantum computing attempts to combine two very hard experimental techniques: the high-finesse optical cavity and the single ion/atom trapping. This is not just doubly-veryhard, but may well be (very-hard)2 • Assuming “hard” > 1, we have “very hard” >> 1, and ...
On A Hueristic Viewpoint Concerning The Nature Of Motion, Infinite
On A Hueristic Viewpoint Concerning The Nature Of Motion, Infinite

... The intention of this paper is to maintain that there has always been an infinite cosmic structure and that matter and energy were always present in infinite quantities and always will be. So the focus of this writing is to determine a new model in which the observable universe is embedded in a larg ...
X 5 Berry phase in solid state physics
X 5 Berry phase in solid state physics

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... The trick still works! Combining joint readout with one-qubit “analysis” gives access to all 3-qubit Pauli operators, only more rotations are necessary. ...
http://www.garfield.library.upenn.edu/small/hsmallrecapturingphysics1986.pdf
http://www.garfield.library.upenn.edu/small/hsmallrecapturingphysics1986.pdf

... associated with spiked patterns of citation, some papers being cited more the first year after they were published than any later year. I n contrast. papers with less dramatic ascents, which may have received comparable numbers of citations over their lifetime, were associated with concepts or proce ...
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- D-Wave Systems
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... After the subQUBO is solved, the current solution is updated with the appropriate bits from the subQUBO solution vector. The goal is that the new candidate solution, built from the prior candidate solution and updates from the subQUBO results (line 19), will jump out of a local minimum. This new Qtm ...
On the Wave Function of the Photon
On the Wave Function of the Photon

... It is shown that the wave function of the photon is a very useful concept with interesting ramifications. It plays a major role in bridging the gap between classical theory of electromagnetism and quantum electrodynamics. The photon wave function can also be used to construct a phase-space distribut ...
PowerPoint
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Aspects of the Quantum Hall Effect
Aspects of the Quantum Hall Effect

... They found, in addition to the integer plateaus, additional steps in the Hall resistance at fractional values of the filling factor, at ν = 13 , 51 and so on. The theoretical obstacle to explaining these features was stark and immediate: when ν < 1, there are more available degenerate electronic sta ...
84, 085123 (2011)
84, 085123 (2011)

... orbital magnetic field, which breaks the time-reversal symmetry (TRS) and leads to Landau levels for quantum states. The TRS can also be broken spontaneously (e.g., in a ferromagnetic phase) or by other means without the external orbital magnetic field and the associated Landau levels. The TRS break ...
Type II InAs/GaAsSb quantum dots: Highly tunable exciton geometry
Type II InAs/GaAsSb quantum dots: Highly tunable exciton geometry

... Besides type II band alignment, the vicinity of the top GaAsSb/GaAs interface, located a few nanometers above the QD apex, is a key element in our design (see the inset in Figure 1(b)). First, it acts as an effective barrier for the holes, preventing the weakly localized hole to drift away and ioniz ...
The dynamical equation of the spinning electron - UPV-EHU
The dynamical equation of the spinning electron - UPV-EHU

... This is the basic structure of the spinning particle models obtained within the kinematical formalism developed by the author [2–5] and also suggested by Dirac’s analysis of the internal motion of the electron [6]. There, the charge of the particle is at a point r, but this point is not the centre o ...
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Canonical quantization

In physics, canonical quantization is a procedure for quantizing a classical theory, while attempting to preserve the formal structure, such as symmetries, of the classical theory, to the greatest extent possible.Historically, this was not quite Werner Heisenberg's route to obtaining quantum mechanics, but Paul Dirac introduced it in his 1926 doctoral thesis, the ""method of classical analogy"" for quantization, and detailed it in his classic text. The word canonical arises from the Hamiltonian approach to classical mechanics, in which a system's dynamics is generated via canonical Poisson brackets, a structure which is only partially preserved in canonical quantization.This method was further used in the context of quantum field theory by Paul Dirac, in his construction of quantum electrodynamics. In the field theory context, it is also called second quantization, in contrast to the semi-classical first quantization for single particles.
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