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The Schrödinger Equation
The Schrödinger Equation

... Solutions that do not satisfy these properties do not generally correspond to physically realizable circumstances ...
Excitation of an Atomic Electron to a Coherent Superposition of
Excitation of an Atomic Electron to a Coherent Superposition of

... and out in a breathing motion at the classical Kepler period. For short times a radial wave packet is very similar to the coherent state of a harmonic oscillator which also consists of a superposition of energy eigenstates [Eq. (2)] and results in a localized probability oscillating back and forth i ...
Quantum superposition of distinct macroscopic states
Quantum superposition of distinct macroscopic states

What is Time in Quantum Mechanics?
What is Time in Quantum Mechanics?

... repertoire of geometrical tools, a few other tools that have already been developed in differential geometry, although for a different reason. 2.2. Time of arrival according to EEQT In EEQT a detector is characterized by a sensitivity parameter κ > 0. Here let us compare time of arrival obtained form ...
ppt1 - Zettaflops
ppt1 - Zettaflops

... Quantum information is reducible to qubits i.e. two-state quantum systems such as a photon's polarization or a spin-1/2 atom. Quantum information processing is reducible to one- and two-qubit gate operations. Qubits and quantum gates are fungible among different quantum systems ...
Slide 1
Slide 1

... “Perhaps […] we need a mathematical theory of quantum automata. […] the quantum state space has far greater capacity than the classical one: […] in the quantum case we get the exponential growth […] the quantum behavior of the system might be much more complex than its ...
Document
Document

7.4 The Quantum-Mechanical Model of the Atom
7.4 The Quantum-Mechanical Model of the Atom

Phase noise in collective binary phase shift keying with Hadamard
Phase noise in collective binary phase shift keying with Hadamard

... Suppose now that the transmission of each BPSK symbol is affected by uncorrelated Gaussian phase noise [11] characterized by a standard deviation σ . In this model, before the readout stage the phases of individual BPSK symbols are (eiφ1 h1l , eiφ2 h2l , . . . , eiφL hLl ), where L random phase vari ...
Does Quantum Mechanics Make Sense?
Does Quantum Mechanics Make Sense?

Physics 2018: Great Ideas in Science: The Physics Module Quantum
Physics 2018: Great Ideas in Science: The Physics Module Quantum

Symmetry and Asymmetry in the Mendeleïev`s Periodic Table
Symmetry and Asymmetry in the Mendeleïev`s Periodic Table

... This equation makes it possible to propose new graphic designs of the Mendeleïev’s table 3 : -« 2-dimensions conventional table » : it is the usual representation in which lanthanides were reintegrated in their place. This table extends by bottom when p increases (please see supplementary informatio ...
A1993LX38200001
A1993LX38200001

... We had fun correlating classical and quantum behavior in scattering, and before long had produced a series of three papers. The first, with coauthors D.L. Hill and M. Wakano, explored special features of barrier penetration. The second (the one under discussion here) provided general methodology for ...
Environment-assisted quantum control of a solid
Environment-assisted quantum control of a solid

Quantum Mechanics
Quantum Mechanics

... The wave function is usually complex and is represented by Ψ. Since the wave function is complex, its direct measurement in any physical experiment is not possible. It is just mathematical function of x, t etc. Once the wave function corresponding to a system is known, the state of the system can be ...
CHM 3411 - Physical Chemistry II
CHM 3411 - Physical Chemistry II

... simultaneously measure the values for the physically measurable properties corresponding to A and B with no uncertainty. In addition, when two operators commute it is possible to find a complete orthonormal set of basis functions that are simultaneously eigenfunctions of both A and B. Conversely, if ...
Matrix elements  for the Coulomb interaction
Matrix elements for the Coulomb interaction

md-vol 4 no 2.qxp - md
md-vol 4 no 2.qxp - md

... During the same centuries, the fundamental science studying the non-living nature expanded essentially our ideas about it, in particular, due to the field concepts. And nowadays, even at domestic level nobody is surprised at the possibility to tune the radio or TV sets to a great number of stations ...
Quantum Imaging I
Quantum Imaging I

... The ground camera is pointed to a “magic mirror” in space. A point like photo-detector D1 collects all photons coming from the object and records the photon registration time. By studying the time correlation between the photon registration times of D1 and each of the CCD element, a “ghost” image is ...
Introduction to Quantum Statistical Mechanics
Introduction to Quantum Statistical Mechanics

... Let us introduce some very classical examples as illustrations of the above. The interpretation of the wave function, in the setting where Γ = R2dN , is that |ψ(q)|2 dq is the probability that the system is at point q of configuration space and if ψ̂(p) denotes the Fourier transform of ψ, |ψ̂(p)|2 d ...
Quantum linear Boltzmann equation with finite intercollision time
Quantum linear Boltzmann equation with finite intercollision time

... where the subscripts 储 refer to the components parallel to Q. It is obvious that after our single collision the particle’s density matrix ␳ˆ , whatever it was before the collision, becomes perfect diagonal in P储. Gradually, after many collisions, the state ␳ˆ becomes a mixture of plane waves, no off ...
Why quantum gravity? - University of Oxford
Why quantum gravity? - University of Oxford

... laboratory experiment of Pound and Rebka; through the precession of the perihelion of Mercury; to the evolution of the universe and the cosmic microwave background. More recently discrepancies have been found in large distance physics and at present these are the subject of intense activity. We do n ...
Quantum control of a Landau-quantized two
Quantum control of a Landau-quantized two

... reflection THz pulse, grows again with time because of the interaction with the long-lasting self-reemitted coherent THz wave. Note that the revived oscillation is in phase with the original one in this case (blue dashed curve). In contrast, at 2.4 T, the reemission oscillations, initially enhanced ...
Distributed measurement-based quantum computation
Distributed measurement-based quantum computation

... a formal language for distributed quantum computation is lacking. While some endeavors have been made into using techniques from classical process calculi [LJ04, GN04], these have remained rather descriptive and are, to our opinion, not very well-suited to really get a grip on the low-level quantum ...
Spin supercurrents and torquing with majorana fermions
Spin supercurrents and torquing with majorana fermions

... 2. Small non-topological region Quantum oscillations between these two states ...
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Coherent states

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