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The notion of four-momentum in TGD
The notion of four-momentum in TGD

Locating the quantum critical point of the Bose
Locating the quantum critical point of the Bose

Quantum computing with rare-earth-ion doped crystals
Quantum computing with rare-earth-ion doped crystals

Newton`s cradle analogue with Bose
Newton`s cradle analogue with Bose

arXiv:0803.3834v2 [quant-ph] 26 May 2009
arXiv:0803.3834v2 [quant-ph] 26 May 2009

Correlated many-electron states in a quantum dot containing a
Correlated many-electron states in a quantum dot containing a

... Magnetic doping of quantum dots based on II-VI semiconductors has been demonstrated.4 More recently, a quantum dot doped with a single magnetic ion was realized.5,6 Such a system allows the control of the interaction between individual charge carriers and a single magnetic atom. This is expected to ...
Entanglement in Open Quantum Systems
Entanglement in Open Quantum Systems

On the equivalence between non-factorizable mixed
On the equivalence between non-factorizable mixed

Guidance Applied to Quantum Operations in Josephson
Guidance Applied to Quantum Operations in Josephson

Braid Topologies for Quantum Computation
Braid Topologies for Quantum Computation

Quantum Theory Looks at Time Travel
Quantum Theory Looks at Time Travel

... This also has enormous consequences on the paradoxes of free will. It shows that it is perfectly logical to assume that one has many choices and that one is free to take any one of them. Until a choice is taken, the future is not determined. However, once a choice is taken, and it leads to a particu ...
Solving Schrödinger`s equation around a desired energy
Solving Schrödinger`s equation around a desired energy

A 2LFQ Scheduling with Dynamic Time Quantum using Mean Average
A 2LFQ Scheduling with Dynamic Time Quantum using Mean Average

Cryptographic distinguishability measures for quantum
Cryptographic distinguishability measures for quantum

... determine not only the ease of information retrieval by the legitimate users, but also the inaccessibility of that information to a hostile opponent. Therefore, if one wants to model and analyze the cryptographic security of quantum protocols, one of the most basic questions to be answered is the fo ...
Probability in the Many-Worlds Interpretation of Quantum Mechanics
Probability in the Many-Worlds Interpretation of Quantum Mechanics

... to the past before the last quantum measurement, but we can follow it to the future only until the next measurement. In our branch we remember past events of performing quantum measurements and obtaining particular results. It seems to us that the outcomes came out randomly, although we know that th ...
Document
Document

`universal` phase for electron transmission in quantum dots
`universal` phase for electron transmission in quantum dots

... transition region, which resembles universal behaviour (not shown). The phase climbs throughout each conductance peak and drops in the valleys, riding though on a rising background phase. However, for dot occupation of some 14 electrons and higher (Fig. 6), the phase ‘locks’ into the universal behav ...
From  Quantum  theory to Quantum  theology: Abstract J
From Quantum theory to Quantum theology: Abstract J

... of representing the meaning of fuzzy concepts. As a consequence, the approaches based on first order logic and classical probability theory do not provide an appropriate conceptual framework for dealing with the representation· of commonsense knowledge, since such knowledge is by its nature both lex ...
The Fourth Quantum Number
The Fourth Quantum Number

What is reality? - Brian Whitworth
What is reality? - Brian Whitworth

... is irrelevant simulates the physical world in all its detail (Figure 3). Classical programs can simulate quantum logic gates so in theory quantum collapse, entanglement and superposition could be classical processing in another context. The issues now are: ...
J JCAP01(2009)030 Covariant effective action for loop quantum cosmology `
J JCAP01(2009)030 Covariant effective action for loop quantum cosmology `

... If the fundamental picture is discrete, this issue becomes trickier. Since in LQC an effective continuum description is available, this question can be posed and it is pertinent to ask: Does the effective dynamics of LQC which results in a non-singular evolution correspond to a covariant description ...
- Philsci
- Philsci

Braid Topologies for Quantum Computation
Braid Topologies for Quantum Computation

Slides
Slides

W. Pauli - Fisica Fundamental
W. Pauli - Fisica Fundamental

... different causes for the energy differences of the triplet levels of the alkaline earths, both the anomaly of the relativity correction of the optically active electron and the dependence of the interaction between the electron and the atom core on the relative orientation of these two systems. A mo ...
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Quantum machine learning

Quantum machine learning is a newly emerging interdisciplinary research area between quantum physics and computer science that summarises efforts to combine quantum mechanics with methods of machine learning. Quantum machine learning models or algorithms intend to use the advantages of quantum information in order to improve classical methods of machine learning, for example by developing efficient implementations of expensive classical algorithms on a quantum computer. However, quantum machine learning also includes the vice versa approach, namely applying classical methods of machine learning to quantum information theory.Although yet in its infancy, quantum machine learning is met with high expectations of providing a solution for big data analysis using the ‘parallel’ power of quantum computation. This trend is underlined by recent investments of companies such as Google and Microsoft into quantum computing hardware and research. However, quantum machine learning is still in its infancy and requires more theoretical foundations as well as solid scientific results in order to mature to a full academic discipline.
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