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Fisher information in quantum statistics
Fisher information in quantum statistics

Quantum Computer Simulation Using CUDA
Quantum Computer Simulation Using CUDA

... computing, others in the research community are developing algorithms that can take advantage of such machines. Through exploitation of the inherit superposition observed at the quantum level, many interesting quantum algorithms (q-algorithms) have been developed. These range from simple communicati ...
Lower Bounds on Matrix Rigidity via a Quantum
Lower Bounds on Matrix Rigidity via a Quantum

Quantum information theory: Results and open
Quantum information theory: Results and open

Nicholas Bigelow - University of Rochester
Nicholas Bigelow - University of Rochester

Strongly correlated phenomena in cavity QED
Strongly correlated phenomena in cavity QED

PPT - Fernando Brandao
PPT - Fernando Brandao

Computational Power of the Quantum Turing Automata
Computational Power of the Quantum Turing Automata

G-Complexity, Quantum Computation and Anticipatory Processes
G-Complexity, Quantum Computation and Anticipatory Processes

quantum computer - Caltech Particle Theory
quantum computer - Caltech Particle Theory

... when he derisively dismissed quantum entanglement as “Spukhafte Fernwirkungen” (Spooky action at a distance). The aim of quantum information science is to relish, explore, and exploit the glorious subtlety of the quantum world in all its facets ...
Factoring 51 and 85 with 8 qubits
Factoring 51 and 85 with 8 qubits

Quantum Computer Compilers
Quantum Computer Compilers

... E.g., the order of 5 (mod 21) is 6. The order-finding problem is, given two relatively prime integers x and N, to find the order of x (mod N). All known classical algorithms for order finding are superpolynomial in the number of bits in N. Al Aho ...
Entanglement, Gravity, and Quantum Error Correction
Entanglement, Gravity, and Quantum Error Correction

Quantum Optics - Assets - Cambridge University Press
Quantum Optics - Assets - Cambridge University Press

Quantum Noise and Quantum Operations
Quantum Noise and Quantum Operations

Theory and simulations of quantum glass forming liquids
Theory and simulations of quantum glass forming liquids

Seminar Report
Seminar Report

Realization of the Quantum Toffoli Gate with Trapped Ions
Realization of the Quantum Toffoli Gate with Trapped Ions

The Power of Quantum Advice
The Power of Quantum Advice

Observable Measure of Quantum Coherence in Finite
Observable Measure of Quantum Coherence in Finite

Quantum channels and their capacities: An introduction
Quantum channels and their capacities: An introduction

... probe to the very core of the distinction between quantum and classical. (...) Questions originally asked for the most impractical of reasons - questions about the EPR paradox, the quantum-to-classical transition, the role of information, and the interpretation of the quantum state vector - have bec ...
A functional quantum programming language
A functional quantum programming language

Quantum Analysis on Time Behavior of a Lengthening Pendulum
Quantum Analysis on Time Behavior of a Lengthening Pendulum

arXiv:quant-ph/0610027v1 4 Oct 2006
arXiv:quant-ph/0610027v1 4 Oct 2006

Feeling the Future again
Feeling the Future again

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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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