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Superconducting Circuits and Quantum Computation
Superconducting Circuits and Quantum Computation

NeuroQuantology Journal
NeuroQuantology Journal

Integrated optomechanics and linear optics quantum circuits
Integrated optomechanics and linear optics quantum circuits

Quantum algorithms - People @ EECS at UC Berkeley
Quantum algorithms - People @ EECS at UC Berkeley

THE ALMOST IMPOSSIBLE WORLDS IN QUANTUM INFORMATION
THE ALMOST IMPOSSIBLE WORLDS IN QUANTUM INFORMATION

Quantum Computation - University of Denver
Quantum Computation - University of Denver

- Philsci
- Philsci

One Complexity Theorist`s View of Quantum Computing
One Complexity Theorist`s View of Quantum Computing

... The complexity of quantum computation remains poorly understood. While physicists attempt to find ways to create quantum computers, we still do not have much evidence one way or the other as to how useful these machines will be. The tools of computational complexity theory should come to bear on the ...
14-06-16_PLCQC - Columbia University
14-06-16_PLCQC - Columbia University

quantum effects in biology - Assets
quantum effects in biology - Assets

... world around us, yet the interface between quantum mechanics and biology is only now being explored. This book uses a combination of experiment and theory to examine areas of biology believed to be strongly influenced by manifestly quantum phenomena. Covering subjects ranging from coherent energy tr ...
Quantum Connections
Quantum Connections

... test all possible solutions to a problem simultaneously. Just a main shielded from external interference. They compensate for few hundred qubits can calculate a tableau of outcomes that ex­ sacrifices in direct connectivity by allowing thousands or even millions of qubits to collaborate indirectly. ...
Simulating large quantum circuits on a small quantum computer
Simulating large quantum circuits on a small quantum computer

From Physics to Information Theory and Back - Philsci
From Physics to Information Theory and Back - Philsci

Topological Phases of Matter classification and application
Topological Phases of Matter classification and application

Controlling heat and particle currents in nanodevices
Controlling heat and particle currents in nanodevices

... to a hot one2. This is firmly based on the assumption that a macroscopic body in equilibrium is characterized by a single parameter: its temperature. When two objects with different temperatures are brought in contact, heat will flow from the hotter to the colder one. In macroscopic objects, the obs ...
Quantum Information Technology based on Single Electron Dynamics
Quantum Information Technology based on Single Electron Dynamics

... many quantum dots, single-spin manipulation and measurement techniques are essential. The effective g-factor of each electron spin can be made different for different quantum dots through g-factor engineering, or a moderate magnetic field gradient is applied to the quantum dots, so that each qubit i ...
Compute by“Cooling”Quantum System
Compute by“Cooling”Quantum System

as a PDF
as a PDF

Quantum - National Physical Laboratory
Quantum - National Physical Laboratory

Quantum Entanglement
Quantum Entanglement

Optimal parallel quantum query algorithms
Optimal parallel quantum query algorithms

Preparation of Papers in Two-Column Format for the
Preparation of Papers in Two-Column Format for the

Quantum-like model of unconscious–conscious dynamics
Quantum-like model of unconscious–conscious dynamics

A Quantum Structure Description of the Liar Paradox
A Quantum Structure Description of the Liar Paradox

A Quantum Structure Description of the Liar Paradox∗
A Quantum Structure Description of the Liar Paradox∗

< 1 ... 13 14 15 16 17 18 19 20 21 ... 44 >

Quantum cognition

Quantum cognition is an emerging field which applies the mathematical formalism of quantum theory to model cognitive phenomena such as information processing by the human brain, decision making, human memory, concepts and conceptual reasoning, human judgment, and perception. The field clearly distinguishes itself from the quantum mind as it is not reliant on the hypothesis that there is something micro-physical quantum mechanical about the brain. Quantum cognition is based on the quantum-like paradigm or generalized quantum paradigm or quantum structure paradigm that information processing by complex systems such as the brain, taking into account contextual dependence of information and probabilistic reasoning, can be mathematically described in the framework of quantum information and quantum probability theory.Quantum cognition uses the mathematical formalism of quantum theory to inspire and formalize models of cognition that aim to be an advance over models based on traditional classical probability theory. The field focuses on modeling phenomena in cognitive science that have resisted traditional techniques or where traditional models seem to have reached a barrier (e.g., human memory ), and modeling preferences in decision theory that seem paradoxical from a traditional rational point of view (e.g., preference reversals ). Since the use of a quantum-theoretic framework is for modeling purposes, the identification of quantum structures in cognitive phenomena does not presuppose the existence of microscopic quantum processes in the human brain.
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