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2005-q-0024b-Postulates-of-quantum-mechanics
2005-q-0024b-Postulates-of-quantum-mechanics

... – Any two states s, t are either the same (s = t), or different (s  t), and that’s all there is to it. ...
TALK - ECM-UB
TALK - ECM-UB

... • Linearization insatbilities in de Sitter spacetime imply nontrivial constraints on the quantum states of a scalar field in de Sitter spacetime. •It turns out that the quantum states of a scalar field in de Sitter spacetime must, if consistently coupled to gravity to leading order, be de Sitter inv ...
A Chemical Approach to Molecular Spin Qubits: Decoherence and
A Chemical Approach to Molecular Spin Qubits: Decoherence and

... quantum effects, from medical MRIs to quantum dots. Nevertheless, there is ample room for research, development and innovation in the next-generation quantum technologies such as quantum computation, quantum key distribution and quantum metrology, which all revolve around the coherent manipulation o ...
Permanent Uncertainty: On the Quantum evaluation of the determinant and permanent of a matrix
Permanent Uncertainty: On the Quantum evaluation of the determinant and permanent of a matrix

CS-567 Machine Learning
CS-567 Machine Learning

PACS numbers: 32.80.Pj, 42.50.Vk, 89.80.+h In a quantum computer
PACS numbers: 32.80.Pj, 42.50.Vk, 89.80.+h In a quantum computer

... the trapped ions. The electronic configuration of individual ions, and the quantum state of their collective CM vibrations can be manipulated by coherent interactions of the ion with a laser beam, in a standing wave configuration, which can be pointed at any of the ions. The CM mode of axial vibrati ...
a 1 - University of San Francisco
a 1 - University of San Francisco

Diamond NV centers for quantum computing and quantum
Diamond NV centers for quantum computing and quantum

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Steven Simon

Adiabatic Quantum Computation is Equivalent to Standard Quantum Computation Dorit Aharonov
Adiabatic Quantum Computation is Equivalent to Standard Quantum Computation Dorit Aharonov

... Quantum computation has emerged in the last decade as an exciting and promising direction of research due to several breakthrough discoveries. Shor’s quantum algorithm for factorization [1], followed by several other algorithms to solve algebraic and combinatorial problems (see, e.g., [2–5]) have de ...
Outline - Lafe Spietz
Outline - Lafe Spietz

... Norm Bergren José Aumentado ...
people.ysu.edu
people.ysu.edu

Speculations on the Union of Science and Religion
Speculations on the Union of Science and Religion

The quantum field theory (QFT) dual paradigm in fun
The quantum field theory (QFT) dual paradigm in fun

... pending on the modes in which they are organized, and hence on ...
Do not mess with time: Probing faster than light travel and
Do not mess with time: Probing faster than light travel and

Glassy Chimeras Could Be Blind to Quantum Speedup:
Glassy Chimeras Could Be Blind to Quantum Speedup:

Einstein-Rosen Bridge (ER), Einstein-Podolsky
Einstein-Rosen Bridge (ER), Einstein-Podolsky

Entanglement, Decoherence and the Quantum/Classical
Entanglement, Decoherence and the Quantum/Classical

... range. Nonetheless, these experiments clearly demonWhen the system is brought into a superposition of strate that the state of one particle is always correlated to different macroscopic states, information about this superthe result of the measurement performed on the other, in position is unavoidab ...
Particles in a Quantum Ontology of Properties
Particles in a Quantum Ontology of Properties

... contextuality, indistinguishability and non-separability. These are recognized novel characteristics of quantum theory, but most of the philosophy of physics literature treats them as more or less independent of each other and no unifying ontological picture has been proposed in which they all find ...
DY 61.1–61.8 - DPG
DY 61.1–61.8 - DPG

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Collapse. What else?

Quantum Entanglement and Information Quantifier for Correlated
Quantum Entanglement and Information Quantifier for Correlated

Do quantum strategies always win?
Do quantum strategies always win?

A Signed Particle Formulation of Non
A Signed Particle Formulation of Non

CHAPTER 2. LAGRANGIAN QUANTUM FIELD THEORY §2.1
CHAPTER 2. LAGRANGIAN QUANTUM FIELD THEORY §2.1

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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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